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Grid Automation Controller COM600 4.0LON-LAG Master (OPC) User's Manual
Contents:
1. About this manual .................................................................................. 7
1.1. Copyrights ...................................................................................... 71.2. Trademarks .................................................................................... 71.3. General .......................................................................................... 71.4. Document conventions .................................................................. 81.5. Use of symbols .............................................................................. 91.6. Terminology .................................................................................... 91.7. Abbreviations ............................................................................... 111.8. Related documents ...................................................................... 121.9. Document revisions ..................................................................... 12
2. Introduction ........................................................................................... 13
2.1. Functional overview ..................................................................... 132.2. LON OPC Server features ........................................................... 14
3. Configuration ........................................................................................ 16
3.1. About this section ......................................................................... 163.2. Overview of configuration ............................................................ 163.3. Building object tree ...................................................................... 18
3.3.1. General about building object tree ................................ 183.3.2. Adding Gateway object ................................................. 193.3.3. Adding LON OPC Server object ................................... 193.3.4. Adding LON Channel objects ........................................ 203.3.5. Adding LON, LSG, Star Coupler, and Clock Master Device
objects ........................................................................... 203.3.6. Adding LON SPA Device or LON SPA Rack objects .... 203.3.7. Adding Logical Device objects ...................................... 203.3.8. Adding Logical Node objects ........................................ 213.3.9. Adding data objects ...................................................... 21
3.4. Configuring objects ...................................................................... 213.4.1. General about configuring objects ................................ 213.4.2. Configuring LON OPC Server properties ...................... 233.4.3. Configuring LON Channel properties ............................ 233.4.4. Configuring Device properties ....................................... 24
3.4.4.1. Configuring LON Device properties ............ 243.4.4.2. Configuring LON Star Coupler and LON Clock
Master properties ....................................... 263.4.4.3. Configuring LSG Device properties ............ 273.4.4.4. Configuring LON SPA Device
properties ................................................... 283.4.4.5. Configuring LON SPA Module
properties ................................................... 283.4.4.6. Configuring Logical Device properties ........ 293.4.4.7. Configuring Logical Node properties .......... 29
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3.4.5. Configuring data objects for Internal OPC Data ............ 303.4.5.1. General about configuring data objects for
Internal OPC Data ...................................... 303.4.5.2. Integer status (INS) for OPC internal data
.................................................................... 303.4.5.3. Single point status (SPS) for OPC internal
data ............................................................ 313.4.5.4. Controllable single point (SPC) for OPC
internal data ................................................ 323.4.6. Configuring data objects for LON Device ..................... 32
3.4.6.1. General about configuring data objects forLON Device ................................................ 32
3.4.6.2. Single point status (SPS) ........................... 333.4.6.3. Double point status (DPS) .......................... 333.4.6.4. Integer status (INS) .................................... 333.4.6.5. Protection activation information (ACT) ...... 343.4.6.6. Directional protection activation information
(ACD) .......................................................... 353.4.6.7. Binary counter reading (BCR) .................... 363.4.6.8. Device name plate (DPL) ........................... 373.4.6.9. Logical Node name plate (LPL) .................. 383.4.6.10. Measured value (MV) ................................. 393.4.6.11. Complex measured value (CMV) ............... 393.4.6.12. WYE ........................................................... 393.4.6.13. Delta (DEL) ................................................. 403.4.6.14. Controllable single point (SPC) .................. 413.4.6.15. Controllable double point (DPC) ................. 433.4.6.16. Controllable integer status (INC) ................ 483.4.6.17. Binary controlled step position information
(BSC) .......................................................... 493.4.6.18. Integer controlled step position information
(ISC) ........................................................... 513.4.6.19. Analogue set point (APC) ........................... 52
3.4.7. Configuring data objects for LON SPA Device/LON SPAModule .......................................................................... 523.4.7.1. General about configuring data objects for
LON SPA Device/LON SPA Module statusinformation .................................................. 52
3.4.7.2. Single point status (LSG SPS) .................. 533.4.7.3. Double point status (LSG DPS) ................. 543.4.7.4. Integer status (LSG INS) ............................ 553.4.7.5. Protection activation information (LSG ACT)
.................................................................... 563.4.7.6. Directional protection activation information
(LSG ACD) ................................................. 593.4.7.7. Binary counter reading (LSG BCR) ............ 623.4.7.8. Device name plate (LSG DPL) ................... 633.4.7.9. Logical node name plate (LSG LPL) ......... 64
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3.4.7.10. Measured value (LSG MV) ......................... 653.4.7.11. Complex measured value (LSG CMV) ....... 663.4.7.12. WYE (LSG WYE) ....................................... 663.4.7.13. Delta (LSG DEL) ........................................ 673.4.7.14. Controllable single point (LSG SPC) .......... 683.4.7.15. Controllable double point (LSG DPC) ........ 713.4.7.16. Controllable integer status (LSG INC) ........ 803.4.7.17. Binary controlled step position information
(LSG BSC) .................................................. 813.4.7.18. Integer controlled step position information
(LSG ISC) ................................................... 843.4.7.19. Analogue set point (LSG APC) ................... 85
3.4.8. Configuring data objects for Star Coupler and ClockMaster (LMK) ................................................................ 863.4.8.1. Single point status for Star Coupler and Clock
Master (SPS) .............................................. 863.4.8.2. Integer status for Star Coupler and Clock
Master (INS) ............................................... 863.4.8.3. Logical Node name plate for Star Coupler and
Clock Master (LPL) ..................................... 873.4.9. Event definitions ............................................................ 873.4.10. Using scales .................................................................. 87
4. Operation ............................................................................................... 88
4.1. About this section ......................................................................... 884.2. Activating COM600 with new configurations ............................... 884.3. LON OPC Server diagnostics ...................................................... 884.4. Monitoring and controlling LON Channel Activity ....................... 894.5. Monitoring and controlling LON Device communication .............. 904.6. Monitoring LSG Device status information .................................. 914.7. Monitoring LON SPA Device and LON SPA Module status
information ................................................................................... 924.8. Monitoring Clock Master status information ................................. 934.9. Monitoring Star Coupler status information ................................. 94
5. Technical reference .............................................................................. 96
5.1. About this section ......................................................................... 965.2. IEC 61850 data modeling ............................................................ 96
5.2.1. General about IEC 61850 data modeling ...................... 965.2.2. Data objects for status information ............................... 97
5.2.2.1. Single point status (SPS) ........................... 975.2.2.2. Double point status (DPS) .......................... 975.2.2.3. Integer status (INS) .................................... 985.2.2.4. Protection activation information (ACT) ...... 985.2.2.5. Directional protection activation information
(ACD) .......................................................... 985.2.2.6. Binary counter reading (BCR) .................... 99
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5.2.2.7. Device name plate (DPL) ......................... 1005.2.2.8. Logical node name plate (LPL) ................ 100
5.2.3. Data objects for measurand information ..................... 1005.2.3.1. Measured value (MV) ............................... 1005.2.3.2. Complex measured value (CMV) ............. 1015.2.3.3. WYE ......................................................... 1015.2.3.4. Delta (DEL) ............................................... 102
5.2.4. Data objects for controllable status information .......... 1025.2.4.1. Controllable single point (SPC) ................ 1025.2.4.2. Controllable double point (DPC) ............... 1035.2.4.3. Controllable integer status (INC) .............. 1035.2.4.4. Binary controlled step position information
(BSC) ........................................................ 1045.2.4.5. Integer controlled step position information
(ISC) ......................................................... 1045.2.5. Data objects for controllable analogue information ..... 105
5.2.5.1. Analogue set point (APC) ......................... 1055.3. Attributes .................................................................................... 105
5.3.1. General about attributes ............................................. 1055.3.2. Server attributes .......................................................... 1055.3.3. LON Channel attributes .............................................. 1065.3.4. LON Device attributes (LON REX IED) ....................... 1075.3.5. LON SPA Gateway, LON Clock Master and LON Star
Coupler attributes ........................................................ 1115.3.6. LON SPA Device/ LON SPA Module attributes ........... 1125.3.7. Status codes ............................................................... 114
Index ............................................................................................................ 115
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About this manual1.
Copyrights1.1.
The information in this document is subject to change without notice and should not beconstrued as a commitment by ABB Oy. ABB Oy assumes no responsibility for anyerrors that may appear in this document.
In no event shall ABB Oy be liable for direct, indirect, special, incidental, or consequentialdamages of any nature or kind arising from the use of this document, nor shall ABB Oybe liable for incidental or consequential damages arising from use of any software orhardware described in this document.
This document and parts thereof must not be reproduced or copied without written per-mission from ABB Oy, and the contents thereof must not be imparted to a third partynor used for any unauthorized purpose.
The software or hardware described in this document is furnished under a license andmay be used, copied, or disclosed only in accordance with the terms of such license.
© Copyright 2012 ABB. All rights reserved.
Trademarks1.2.
ABB is a registered trademark of ABB Group. All other brand or product names men-tioned in this document may be trademarks or registered trademarks of their respectiveholders.
General1.3.
This manual provides thorough information on the LON LAG Master Protocol (OPC)1.1 (later referred to as LON OPC Server) and the central concepts related to it. Youfind instructions on how to configure LON OPC Server related objects. The basic oper-ation procedures are also discussed.
Information in this user’s manual is intended for application engineers who configurethe LON OPC Server.
As a prerequisite, you should understand the LON technology.
This user’s manual is divided into following sections:
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Introduction
This section gives an overview of the LON OPC Server and its features.
Configuration
In this section you will find an overview of configuration. You are given instructionson how to configure LON OPC Server related objects and the model of a substationor system.
Operation
This section covers the basic operation procedures you can carry out when transferringor activating Grid Automation Controller COM600 (later referred to as COM600)with new configurations.
You are also given instructions on how to monitor and control the conditions of LONnetwork.
Document conventions1.4.
The following conventions are used for the presentation of material:• The words in names of screen elements (for example, the title in the title bar of a
window, the label for a field of a dialog box) are initially capitalized.• Capital letters are used for the name of a keyboard key if it is labeled on the keyboard.
For example, press the ENTER key.• Lowercase letters are used for the name of a keyboard key that is not labeled on the
keyboard. For example, the space bar, comma key, and so on.• Press CTRL+C indicates that you must hold down the CTRL key while pressing
the C key (to copy a selected object in this case).• Press ESC E C indicates that you press and release each key in sequence (to copy
a selected object in this case).• The names of push and toggle buttons are boldfaced. For example, click OK.• The names of menus and menu items are boldfaced. For example, the File menu.
• The following convention is used for menu operations: MenuName > Menu-Item > CascadedMenuItem. For example: select File > New > Type.
• The Start menu name always refers to the Start menu on the Windows taskbar.• System prompts/messages and user responses/input are shown in the Courier font.
For example, if you enter a value out of range, the following message is displayed:
Entered value is not valid. The value must be 0 - 30 .
• You can be asked to enter the string MIF349 in a field. The string is shown as followsin the procedure:
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MIF349• Variables are shown using lowercase letters:
sequence name
Use of symbols1.5.
This publication includes warning, caution, and information icons that point out safety-related conditions or other important information. It also includes tip icons to point outuseful information to the reader. The corresponding icons should be interpreted as follows.
The electrical warning icon indicates the presence of a hazardwhich could result in electrical shock.
The warning icon indicates the presence of a hazard whichcould result in personal injury.
The caution icon indicates important information or warningrelated to the concept discussed in the text. It may indicatethe presence of a hazard which could result in corruption ofsoftware or damage to equipment or property.
The information icon alerts the reader to relevant facts andconditions.
The tip icon indicates advice on, for example, how to designyour project or how to use a certain function.
Terminology1.6.
DescriptionTerm
An abnormal state of a condition.Alarm
An OPC service for providing information about alarms andevents to OPC clients.
Alarms and Events; AE
An OPC service for providing information about process data toOPC clients.
Data Access; DA
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DescriptionTerm
Part of a logical node object representing specific information,for example, status, or measurement. From an object-orientedpoint of view, a data object is an instance of a class data object.DOs are normally used as transaction objects; that is, they aredata structures.
Data Object; DO
The data set is the content basis for reporting and logging. Thedata set contains references to the data and data attribute val-ues.
Data Set
A physical device that behaves as its own communication nodein the network, for example, protection relay.
Device
Change of process data or an OPC internal value. Normally, anevent consists of value, quality, and timestamp.
Event
A physical IEC 61850 device that behaves as its own commu-nication node in the IEC 61850 protocol.
Intelligent Electronic Device
Representation of a group of functions. Each function is definedas a logical node. A physical device consists of one or severalLDs.
Logical Device; LD
The smallest part of a function that exchanges data. An LN isan object defined by its data and methods.
Logical Node; LN
A communication protocol developed by Echelon.LON
A proprietary method of ABB on top of the standard LON pro-tocol.
LON Application Guideline forsubstation automation; LAG
Series of standards specifications aiming at open connectivityin industrial automation and the enterprise systems that supportindustry.
OPC
Representation of a connection to the data source within theOPC server. An OPC item is identified by a string <objectpath>:<property name>. Associated with each OPC item areValue, Quality, and Time Stamp.
OPC item
Named data item.Property
The report control block controls the reporting processes forevent data as they occur. The reporting process continues aslong as the communication is available.
Report Control Block
ABB proprietary communication protocol used in substationautomation.
SPA
Protection and/or Control Product supporting the SPA protocolversion 2.5 or earlier.
SPA device
XML-based description language for configurations of electricalsubstation IEDs. Defined in IEC 61850 standard.
Substation Configuration Lan-guage; SCL
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Abbreviations1.7.
DescriptionAbbreviation
Alarms and EventsAE
Application Service Data UnitASDU
Buffered Report Control BlockBRCB
Data AccessDA
Data Message Code DefinitionDMCD
Data ObjectDO
Gateway, component connecting two communication networks togetherGW
Human Machine InterfaceHMI
International Electrotechnical CommissionIEC
Intelligent Electronic DeviceIED
LON Application Guideline for substation automationLAG
Local Area NetworkLAN
Logical DeviceLD
LonMark interoperable device communicating in LonWorks network. Inthis document, the term is used for devices that do not support the ABBLON/LAG communication.
LMK
Logical NodeLN
LON SPA GatewayLSG
Network Control CenterNCC
Norwegian User ConventionNUC
Network VariableNV
Object Linking and EmbeddingOLE
OLE for Process ControlOPC
Protection & ControlP&C
Programmable Logic ControllerPLC
Program Organization UnitPOU
Request To SendRTS
Substation AutomationSA
Substation Configuration DescriptionSCD
Substation Configuration LanguageSCL
Sequential Function ChartSFC
Single Line DiagramSLD
Simple Network Management ProtocolSNMP
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DescriptionAbbreviation
Simple Network Time ProtocolSNTP
Simple Object Access ProtocolSOAP
Report Control BlockRCB
Unbuffered Report Control BlockURCB
eXtended Markup LanguageXML
Related documents1.8.
MRS numberName of the manual
1MRS756125COM600 User’s Manual
Document revisions1.9.
HistoryProduct revisionDocument version/date
Document created1.0A/30.6.2004
Document revised3.0B, C/16.10.2006
Document revised3.0D/22.1.2007
Document revised3.1E/21.12.2007
Document revised3.2F/17.6.2008
Document revised3.3G/13.2.2009
Document revised3.4H/06.11.2009
Document revised3.5K/30.6.2011
Document revised4.0L/31.5.2012
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Introduction2.
Functional overview2.1.
The LON OPC Server provides methods for OPC clients to exchange data with devicescommunicating via the LON/LAG protocol. LON/LAG is a proprietary method of ABBfor secured and efficient data transfer on top of the standard LON protocol.
The LON OPC Server supports a subset of LON/LAG version 1.4 functions. The focusis set to the sliding window and LSG communication and the functions most commonlyused in SA systems. The LON OPC Server has a limited support for network variablecommunication with 3rd party LONMARK devices.
LON-LAG_Master_protocol_a.jpg
Figure 2.1-1 LON OPC Server system overview
(1) NCC (Network Control Center)
(2) COM600 with LON OPC Server
(3) Station Automation Builder 600 (SAB600)
(4) Protection and control devices communicating through the LON-LAG Master Protocol
The LON OPC Server software has two parts: Engineering and diagnostic tools and theactual LON OPC Server. Engineering and diagnostic tools utilize the Station AutomationBuilder 600 (later referred to as SAB600) framework and provide the user interface forengineering and diagnosing the LON OPC Server. The LON OPC Server handles thedata transfer and conversion between the LON protocol and OPC interfaces.
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The SPA protocol is a proprietary method of ABB communicating with protection andcontrol relays. Through LSG, the SPA protocol is used for data transfer between theLON OPC Server and SPA devices.
To create a common and protocol independent data interface between the OPC serverand client, the process data from the LON devices is remodeled using the IEC 61850data modeling.
The configuration data is stored in the SCL format. After the LON OPC Server has beenlaunched, it reads the configuration file and establishes communication with the LONdevices through the LON protocol stack.
Configured LON devices and data modeled according to the IEC 61850 model (see5.2.1, General about IEC 61850 data modeling) are then exposed to OPC clients througha Data Access (DA) server.
LON OPC Server features2.2.
The LON OPC Server supports the following features:
• OPC Data Access v. 1.0/2.0• OPC Alarms and Events specifications v. 1.10• IEC 61850 data modeling• OPC Parameter access:
• Configured with Parameter Filtering Tool• System supervision:
• LON channel communication• LON device communication• Clock Master status information• Star Coupler status information• LSG and SPA device communication
• Time synchronization:• The LON OPC Server can act as a time master or it can receive time synchron-
ization. When the LON OPC Server is configured for receiving time synchron-ization, it updates the operating system time of the PC.
• Command handling:• The LON OPC Server supports both the IEC commands and commands sent
as transparent SPA messages.• LON data types:
• Single Command• Double Command• Regulating Step Command• Single Indication• Double Indication• Bitstring• Measured Value Signed Integer• Measured Value, Short Floating Point
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• Pulse Counter Value• Integrated Totals• Step Position Information
• Transparent SPA:• Transparent SPA can be used for sending and receiving SPA messages over
LON.• LSG/ SPA process communication
• SPA events and measurement updates through network variable update• Commands sent as transparent SPA messages
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Configuration3.
About this section3.1.
This section guides you in the configuration tasks required before you can start usingthe LON OPC Server. For information on the IEC 61850 data modeling, refer to COM600User's Manual.
Start SAB600 to open and name a project.
1. Select File > Open/Manage Project....2. In the Open/Manage Project dialog, select the required location for the project:
• Projects on my computer• Projects on network
3. Select New Project on the left.• Enter a Project Name. The Description is optional.
4. Click Create.5. Click Open Project.
Overview of configuration3.2.
Before you can start using the LON OPC Server, you need to build and configure anobject tree in SAB600 to define the Communication structure.
The possible objects are:• Gateway• LON OPC Server• LON Channel• LON Device (LON REX IED)• LSG Device (LON SPA Gateway)• LON Star Coupler• LON Clock Master• LON SPA Device/LON SPA Rack (with LSG Device object only)• LON SPA Module (with LON SPA Rack object only)• Logical Device objects• Logical Node objects• Data objects
Figure 3.2-1 shows an example view of SAB600 including an object tree in the commu-nication structure on the left and Object Properties window displaying the object propertieson the right.
When configuring OPC servers the following characters cannotbe used in object names: \ ` ' ' #
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LON_configuration_overview.bmp
Figure 3.2-1 Example view of SAB600
The configuration work can basically be divided into two separate tasks:1. building an object tree, and2. configuring object properties.
First, you need to build an object tree. This is done by adding objects to the object tree,see 3.3.1, General about building object tree . Connectivity Packages for certain Protectionand Control products usually contain preconfigurations and tools to facilitate the buildingof the object tree.
Figure 3.2-1 shows an example of how the object tree may look like after it has beenbuilt. In the example tree you can see the LON OPC Server object and its child objectslike channels, devices, and data objects. Indentation is used to indicate the parent-childrelationship between the objects.
After you have added the necessary objects to the object tree in the communicationstructure, you need to configure them, see 3.4.1, General about configuring objects.
Table 3.2-1 describes the objects shown in the object tree (Figure 3.2-1 ).
Table 3.2-1 LON OPC LON Server related objectsDescriptionObject
An object representing the LON OPC Server.LON OPC Server
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DescriptionObject
An object representing a physical channel. You can defineup to two channels per OPC server.
LON Channel
An object representing a physical LON protection andcontrol device. You should not have more than 30 devicesper each channel.
LON Device (LON REX IED)
An object representing a physical device that connectsseveral protection and control devices together.
LON Star Coupler
An object representing a physical device that is used forsynchronization of the LON network.
LON Clock Master
An object representing a physical device that connectsSPA Devices to the LON Network.
LSG Device (LON SPA Gateway)
An object representing a physical SPA protection andcontrol device.
LON SPA Device (with LSG Deviceobject only)
Collection of SPA modules in one physical rack.LON SPA Rack (with LSG Deviceobject only)
An object representing a physical SPA protection andcontrol module.
LON SPA Module (with LON SPARack object only)
An object representing a group of functions. Each functionis defined as a Logical Node. A physical device consistsof one or several LDs.
Logical Device (LD)
An object defined by its data and methods. LN is thesmallest part of a function that exchanges data.
Logical Node (LN)
Data object is an instance of one of the IEC 61850 DataObject Classes such as Single point status and MeasuredValue. Depending on the class, each data object has aset of attributes for monitoring and controlling the object,e.g. value, quality, and control.
Data Object (DO)
Building object tree3.3.
General about building object tree3.3.1.
The object tree is built in the Communication structure of SAB600, see Figure 3.2-1. Itis built by adding objects in a logical order starting from the Gateway.
You have several possible ways to add objects to the object tree in the Communicationstructure:• You can right-click the object to which you want to add a child object. Then select
New > Object type group > Object name, for example New > LON > LON REXIED.
• You can right-click the object type and select New > New. A New Object windowappears. Select the object type you want to add and click OK or double-click it.
• You can copy the object.
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Add the objects in the following order:1. Gateway2. LON OPC Server3. LON Channel4. LON Device (LON REX IED)/ LSG Device (LON SPA Gateway)/ LON Star
Coupler/ LON Clock Master5. LON SPA Device/ LON SPA Rack (with LSG Device object only)6. LON SPA Module (with LON SPA Rack object only)7. Logical Device objects8. Logical Node objects9. Data objects
For information on building a substation structure, refer to COM600 HMI ConfigurationManual.
Adding Gateway object3.3.2.
To start building the object tree, add a Gateway object in the Communication structureby selecting the project name, right-click it and select New > Communication > Gate-way.
Adding LON OPC Server object3.3.3.
After the Gateway object has successfully been added, you can continue building theobject tree by adding a LON OPC Server object.
To add a LON OPC Server object:1. Select the Gateway object in the communication structure and right-click it.2. Add a LON OPC Server object.
By using the SCL Import function, it is possible to import an entire server’s or individualdevice's configurations without having to insert them manually. To open the SCL Importfunction, right-click the desired object, and select SCL Import.
For more information about the SCL Import function, see COM600 User's Manual.
Connectivity Packages for certain protection and control devices can also support otherways to build this structure, depending on the configuration of an individual device, forexample device-related object types and wizards. Typically, Connectivity Packagesinclude SCL description files which must be installed. For further information on theseConnectivity Packages, see the Connectivity Package of a certain device in the productdocumentation.
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Adding LON Channel objects3.3.4.
To add a LON Channel object:1. Select a LON OPC Server object and right-click it.2. Add a LON Channel object.3. Rename the new object. The names of the LON Channels have to be unique.
Adding LON, LSG, Star Coupler, and Clock Master Deviceobjects
3.3.5.
To add a Device object:1. Select a Channel object.2. Add a LON Device (LON REX IED), LSG Device (LON SPA Gateway), LON Star
Coupler or LON Clock Master object.3. Rename the new object. The names of the devices within a LON OPC Server have
to be unique.
The maximum number of devices per each channel is 30.
Adding LON SPA Device or LON SPA Rack objects3.3.6.
With LSG Devices, you must add LON SPA Device or LON SPA Rack objects.
When you create a LON SPA Rack object (with an LSGDevice object only), you must create a LON SPA Moduleobject below the rack.
To add a LON SPA Device or LON SPA Rack object:1. Select an LSG Device object and right-click it.2. Add a LON SPA Device or LON SPA Rack object.3. Rename the new object. The names of the LON SPA Devices and LON SPA Racks
within an LSG Device have to be unique.
To add a LON SPA Module object:1. Select a LON SPA Rack object and right-click it.2. Add a LON SPA Module object.3. Rename the new object. The names of the LON SPA Modules within a LON SPA
Rack have to be unique.
Adding Logical Device objects3.3.7.
To add a Logical Device object:1. Select a LON Device (LON REX IED), LON SPA Device or LON SPA Module
object and right-click it.
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2. Add a Logical Device object.3. Rename the new object. The names of the Logical Device objects have to be unique.
Each LON or SPA physical device must have at least oneLogical Device object as a child object.
Adding Logical Node objects3.3.8.
To add a Logical Node:1. Select a Logical Device object and right-click it.2. Add a Logical Node object.3. Rename the new object. The names of the Logical Node objects have to be unique.
You should have only one Logical Node 0 (LLN0) as a childobject to a Logical Device object.
Adding data objects3.3.9.
To add a data object:1. Select a Logical Node object and right-click it.2. Add a data object.3. Rename the new object. The names of the data objects have to be unique.
Configuring objects3.4.
General about configuring objects3.4.1.
After the objects have been added, configure the object properties. Figure 3.4.1-1 showsan example of how to use SAB600 to configure the object properties for LON REX IED.
To configure an object:1. Select an object in the object tree of the communication structure.
• The object properties appear now in the Object Properties window. The proper-ties and their values can be viewed as shown in Figure 3.4.1-1.
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ObjProp_LON.bmp
Figure 3.4.1-1 Example of object properties in the Objects Properties window
2. Select the property you want to configure. Depending on the property value type,configuring is always done either by• selecting a predefined value from a drop-down menu, or• entering a text string or a numerical value in a text field.
The available properties for different objects are listed in the following subsections.
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Configuring LON OPC Server properties3.4.2.
Table 3.4.2-1 lists the configurable LON OPC Server properties and value ranges forthem. The actual configuration by using SAB600 is performed as described in3.4.1, General about configuring objects.
Table 3.4.2-1 LON OPC Server PropertiesDescriptionValue or Value range/ DefaultProperty/Para-
meter
Basic
Prog ID for OPC alarm and event serverAE Prog ID
Prog ID for OPC data access serverDA Prog ID
Configuring LON Channel properties3.4.3.
The LON Channel properties that can be configured and value ranges for them can befound in Table 3.4.3-1. The actual configuration by using SAB600 is performed asdescribed in 3.4.1, General about configuring objects.
Each LON node of the system must have a unique subnet/nodeaddress.
Table 3.4.3-1 LON Channel propertiesDescriptionValue or Value range/ DefaultProperty/Para-
meter
Basic
Controls whether the channel is initially inuse or not
True
False
Default: True
In Use
CommunicationPort
Device name of the LON interface
Number of ports depends on the usedhardware
LON1...LON2
Default: LON1
Device Name
The LON node number of the communica-tion channel
1...127
Default: 127
LON Node Number
The LON subnet number of the communic-ation channel
1...255
Default: 1
LON Subnet
CommunicationControl
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DescriptionValue or Value range/ DefaultProperty/Para-meter
Parameter defines the clock synchroniza-tion of the LON channel.
No Clock Synchronization
Send NV Warning and NVClock telegrams once persecond.
Send NV Time telegram onceper minute.
Send NV Warning, NV Clockand NV Time telegram.
Send SLCM Reference Time
Receive NV Warning and NVClock telegrams, synchronizesthe operating system timeaccording to the received sync
Receive NV Time telegram,synchronizes the operatingsystem time according to thereceived sync
Default: Send NV Warning, NVClock and NV Time telegram.
Synchronizationmode
Neuron paramet-ers
When the node receives a non-group orbroadcast message requiring a responseor acknowledgement, the receive timer isset to the time interval specified by thisparameter.
128 ms
192 ms
256 ms
384 ms
512 ms
768 ms
1024 ms
Default: 768 ms
Non-Group Timer
Configuring Device properties3.4.4.
Configuring LON Device properties3.4.4.1.
Table 3.4.4.1-1 lists the configurable properties for LON Device (used for ABB controland protection devices) and value ranges for these properties. The actual configurationby using SAB600 is performed as described in 3.4.1, General about configuring objects.
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Each LON node of the system must have a unique subnet/nodeaddress.
Table 3.4.4.1-1 LON Device propertiesDescriptionValue or Value range/
DefaultProperty/Para-meter
Basic
Controls whether the device communicationis initially in use or not.
True
False
Default: True
In Use
Specifies whether the device is in simulationmode or not.
True
False
Default: False
Simulation Mode
Addresses
LON node number of the device1...127
Default: 1
LON Node Number
LON subnet number of the device1...255
Default:1
LON Subnet Num-ber
SPA unit number of the device0...65535
Default: 1
SPA Unit Number
CommunicationControl
Event filter number1...127
Default: 1
Event Filter Num-ber
Receive quota1...10
Default: 10
Receive Quota
Reply timeout in seconds1...655
Default: 20
Reply Timeout
Control Authoriza-tion
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DescriptionValue or Value range/Default
Property/Para-meter
OPC path of the station remote switch posi-tion to be used with this device. The formatis Node#ProgID For OPC Server#ChannelName\IED Name\Logical DeviceName\Logical Node Name\Data Object Namee.g.GW#ABB.LON_OPC_DA_Server.Instance[1]#Chan-nel1\IED1\LD1\GGIO1\loc
Station/RemoteSwitch OPC Path
Session Handling
Session keepalive timeout in milliseconds1...60000
Default: 15000
Session
Keepalive
Timeout
Configuring LON Star Coupler and LON Clock Master properties3.4.4.2.
Table 3.4.4.2-1 LON Star Coupler and LON Clock Master propertiesDescriptionValue or Value range/ DefaultProperty/Para-
meter
Basic
Controls whether the device communica-tion is initially in use or not.
In Use
Not In use
Default: In Use
In Use
Addresses
LON node number of the device1...127
Default: 1
LON Node Number
LON subnet number of the device1...255
Default: 1
LON Subnet Num-ber
CommunicationControl
Defines the period of time (in minutes) thatthe LMK device polls network variables
0...2550
Default: 0
Consistency CheckTime
Defines the period of time (in seconds)that the LMK device polls node status fromthe physical device. If the value is 0, noconnection check polling is used.
0...65535
Default: 20
Diagnostic Interval
Reply timeout in milliseconds1...65535
Default: 10 000
Reply Timeout
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DescriptionValue or Value range/ DefaultProperty/Para-meter
Specifies whether the device is in simula-tion mode or not.
True
False
Default: False
Simulation Mode
Configuring LSG Device properties3.4.4.3.
Table 3.4.4.3-1 LSG Device propertiesDescriptionValue or Value range/ DefaultProperty/Parameter
Basic
Controls whether the devicecommunication is initially in useor not.
In Use
Not In use
Default: In Use
In Use
Addresses
LON node number of thedevice
1...127
Default: 1
LON Node Number
LON subnet number of thedevice
1...255
Default: 1
LON Subnet Number
Communication Control
Defines the period of time (inminutes) that the LMK devicepolls network variables
0...2550
Default: 0
Consistency Check Time
Defines the period of time (inseconds) that the LMK devicepolls node status from thephysical device. If the value is0, no connection check pollingis used.
0...65535
Default: 20
Diagnostic Interval
Reply timeout in milliseconds1...65535
Default: 10 000
Reply Timeout
Specifies whether the device isin simulation mode or not.
True
False
Default: False
Simulation Mode
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Configuring LON SPA Device properties3.4.4.4.
Table 3.4.4.4-1 LON SPA Device propertiesDescriptionValue or Value range/ DefaultProperty/Para-
meter
Basic
Controls whether the device communica-tion is initially in use or not.
In Use
Not In use
Default: In Use
In Use
Specifies whether the device is in simula-tion mode or not.
True
False
Default: False
Simulation Mode
Addresses
The station address of the SPA device.1...899
Default: 1
Station Address
Control Authoriza-tion
OPC path of the station remote switchposition to be used with this device. Theformat is Node#ProgID For OPCServer#Channel Name\IED Name\LogicalDevice Name\Logical Node Name\DataObject Name e.g.GW#ABB.LON_OPC_DA_Server.Instance[1]#Chan-nel1\IED1\LD1\GGIO1\loc
Station/RemoteSwitch OPC Path
Configuring LON SPA Module properties3.4.4.5.
Table 3.4.4.5-1 Configuring LON SPA Module propertiesDescriptionValue or Value range/ DefaultProperty/Para-
meter
Basic
Controls whether the device communica-tion is initially in use or not.
In Use
Not In use
Default: In Use
In Use
Specifies whether the device is in simula-tion mode or not.
True
False
Default: False
Simulation Mode
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DescriptionValue or Value range/ DefaultProperty/Para-meter
Addresses
The station address of the SPA device.1...899
Default: 1
Station Address
Control Authoriza-tion
OPC path of the station remote switchposition to be used with this device. Theformat is Node#ProgID For OPCServer#Channel Name\IED Name\LogicalDevice Name\Logical Node Name\DataObject Name e.g.GW#ABB.LON_OPC_DA_Server.Instance[1]#Chan-nel1\IED1\LD1\GGIO1\loc
Station/RemoteSwitch OPC Path
Configuring Logical Device properties3.4.4.6.
Table 3.4.4.6-1 Logical Device propertiesDescriptionValue or Value range/ DefaultProperty/Parameter
Basic
OPC path of the station remoteswitch position to be used withthis device.
The format is Node#ProgID ForOPC Server#ChannelName\IED Name\LogicalDevice Name\Logical NodeName\Data Object Name
e.g.GW#ABB.LON_OPC_DA_Server.Instance[1]#Chan-nel1\IED1\LD1\GGIO1\loc
Station/Remote Switch OPCPath
Configuring Logical Node properties3.4.4.7.
Table 3.4.4.7-1 Configuring Logical Node propertiesDescriptionValue or Value range/ DefaultProperty/Parameter
Basic
LLN0
Logical node classLLN0Logical Node Class
Other Logical Nodes
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DescriptionValue or Value range/ DefaultProperty/Parameter
Logical node classDefault: CSWILogical Node Class
Logical node instance number1...20
Default: 1
Logical Node Instance
Prefix for logical nodeDefault: empty stringLogical Node Prefix
Configuring data objects for Internal OPC Data3.4.5.
General about configuring data objects for Internal OPC Data3.4.5.1.
Internal data objects describe internal status information of an OPC server, for examplewhether the connection between the LON OPC Server and the device (IED) is workingor not. When internal information of an OPC server needs to be transferred, that isinformation that does not originate from a device, to an OPC Client, virtual data objectsmust be created. See 5.3.1, General about attributes for further information.
LON OPC Server supports three internal data object types that provide status information:
• 3.4.5.2, Integer status (INS) for OPC internal data• 3.4.5.3, Single point status (SPS) for OPC internal data• 3.4.5.4, Controllable single point (SPC) for OPC internal data
Integer status (INS) for OPC internal data3.4.5.2.
Table 3.4.5.2-1 Configurable INS (for OPC internal data) properties for OPC ServersDescriptionValue or Value range/ DefaultProperty/Para-
meter
Basic
Common data class according to IEC61850
INSCommon DataClass
Addresses
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DescriptionValue or Value range/ DefaultProperty/Para-meter
Item tag path for the internal statusinformation. The internal server tags thatcan be used are located in the Attributesnodes that are located under the root, line,and IED nodes. When an attribute tag isreferred to in the internal item definitionsbelow, it is possible to use either the wholetag path or just the path relative to the IED(the internal tags are configured per IED);for example, Attributes\Diagnostic coun-ters\Transmitted data messages. Whenthe whole path is used, it must be pre-ceded by a slash (/) character, forexample, /Channel Name\Attributes\Dia-gnostic counters\Transmitted data mes-sages.
Default: NoneItem Tag Path
Single point status (SPS) for OPC internal data3.4.5.3.
Table 3.4.5.3-1 Configurable SPS (for OPC internal data) properties for OPC serversDescriptionValue or Value range/ DefaultProperty/Para-
meter
Basic
Common data class according to IEC61850
SPSCommon DataClass
Addresses
Item tag path for the internal statusinformation. The internal server tags thatcan be used are located in the Attributesnodes that are located under the root, line,and IED nodes. When an attribute tag isreferred to in the internal item definitionsbelow, it is possible to use either the wholetag path or just the path relative to the IED(the internal tags are configured per IED);e.g. Attributes\Diagnostic counters\Trans-mitted data messages. When the wholepath is used, it must be preceded by aslash (/) character, e.g. /ChannelName\Attributes\Diagnostic counters\Trans-mitted data messages.
Default: Device connectionstatus
Item Tag Path
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Controllable single point (SPC) for OPC internal data3.4.5.4.
Table 3.4.5.4-1 Configurable SPC (for OPC internal data) properties for OPC ServersDescriptionValue or Value range/ DefaultProperty/Para-
meter
Basic
61850-TypeSPC61850-Type
Sub-Type
Sub type of objectSub Type
Addresses
Coil address for the control. Coil (0X refer-ence) address range 1...9999. Address 0equals to no information available.
0...65535Control Coil
Coil or input address for the indication.Coil = 0X reference address range1...9999 or input = 1X reference addressrange 10001...19999. Address 0 equalsto no information available.
0...65535Indication Coil/Input
Configuring data objects for LON Device3.4.6.
General about configuring data objects for LON Device3.4.6.1.
LON OPC Server supports data objects for status, measurand, controllable status, andcontrollable analogue information.
LON OPC Server supports eight data object types that provide status information:• 3.4.6.2, Single point status (SPS)• 3.4.6.3, Double point status (DPS)• 3.4.6.4, Integer status (INS)• 3.4.6.5, Protection activation information (ACT)• 3.4.6.6, Directional protection activation information (ACD)• 3.4.6.7, Binary counter reading (BCR)• 3.4.6.8, Device name plate (DPL)• 3.4.6.9, Logical Node name plate (LPL)
The parameters are stored in Object Properties in SAB600, see the tables for each dataobject type. The actual configuration by using SAB600 is performed as described in3.4.1, General about configuring objects.
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Single point status (SPS)3.4.6.2.
Table 3.4.6.2-1 Configurable SPS properties for OPC Servers with LON DeviceDescriptionValue or Value range/ DefaultProperty/Para-
meter
Basic
Common data class according to IEC61850
SPSCommon DataClass
Addresses
IEC address for indication0...65535
Default: 0
Indication Address
Scale and Unit
Scale to be used with this data objectDefault: NoneScale
Double point status (DPS)3.4.6.3.
Table 3.4.6.3-1 Configurable DPS properties for OPC Servers with LON DeviceDescriptionValue or Value range/ DefaultProperty/Para-
meter
Common data class according to IEC61850
DPSCommon DataClass
Addresses
IEC address for indication0...65535
Default: 0
Indication Address
Scale and Unit
Scale to be used with this data objectDefault: NoneScale
Integer status (INS)3.4.6.4.
You can select the subtype in the Object Properties ofSAB600.
Table 3.4.6.4-1 Configuring INS properties for OPC Servers with LON DeviceDescriptionValue or Value range/ DefaultProperty/Parameter
Basic
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DescriptionValue or Value range/ DefaultProperty/Parameter
Common data class accordingto IEC 61850
INSCommon Data Class
Subtype of the current dataobject: IEC style addressing
Addresses
IEC address for indication0...65535
Default: 0
Indication Address
Scale and Unit
Scale to be used with this dataobject
Scale
Subtype of the current dataobject: SPA Parameter withIEC style addressing
Addresses
IEC address for indication0...65535
Default: 0
Indication Address
SPA parameter for getting theinitial value from the process.Further updates are read byIEC Address.
Default: NoneSPA Parameter for Initial Value
Scale and Unit
Scale to be used with this dataobject
Default: NoneScale
Protection activation information (ACT)3.4.6.5.
You can select the subtype in the Object Properties ofSAB600.
Table 3.4.6.5-1 Configurable ACT properties for OPC Servers with LON DeviceDescriptionValue or Value range/ Default
/ExampleProperty/Para-meter
Basic
Common data class according to IEC61850
ACTCommon DataClass
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DescriptionValue or Value range/ Default/Example
Property/Para-meter
Subtype of thecurrent dataobject: SeparateSingle point statusinformation used
Addresses
IEC address for general0...65535
Default: 0
General Address
IEC address for neutral0 ...65535
Default: 0
Neutral Address
IEC address for phase A0 ...65535
Default: 0
Phase A Address
IEC address for phase B0 ...65535
Default: 0
Phase B Address
IEC address for phase C0 ...65535
Default: 0
Phase C Address
Subtype of thecurrent dataobject: A digitalvalue (bit mask)used for all phases
Addresses
IEC address for general0...65535
Default: 0
General Address
Directional protection activation information (ACD)3.4.6.6.
You can select the subtype in the Object Properties ofSAB600.
Table 3.4.6.6-1 Configurable ACD properties for OPC Servers with LON DeviceDescriptionValue or Value range/ Default
/ExampleProperty/Para-meter
Basic
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DescriptionValue or Value range/ Default/Example
Property/Para-meter
Common data class according to IEC61850
ACDCommon DataClass
Subtype of thecurrent dataobject: Separatesingle point statusinformation used
Addresses
IEC address for general0...65535
Default: 0
General Address
IEC address for neutral0...65535
Default: 0
Neutral Address
IEC address for phase A0...65535
Default: 0
Phase A Address
IEC address for phase B0...65535
Default: 0
Phase B Address
IEC address for phase C0...65535
Default: 0
Phase C Address
SPA parameter for direction, e.g. 35S006Default: NoneSPA Parameter forDirection
Subtype of thecurrent dataobject: A digitalvalue (bit mask)used for all phases
Addresses
IEC address for general0...65535
Default: 0
General Address
SPA parameter for direction, e.g. 35S006Default: NoneSPA Parameter forDirection
Binary counter reading (BCR)3.4.6.7.
Table 3.4.6.7-1 Configurable BCR properties for OPC Servers with LON DeviceDescriptionValue or Value range/ Default
/ExampleProperty/Para-meter
Basic
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DescriptionValue or Value range/ Default/Example
Property/Para-meter
Common data class according to IEC61850
BCRCommon DataClass
Addresses
IEC address for indication0...65535
Default: 14000
Indication Address
Device name plate (DPL)3.4.6.8.
Table 3.4.6.8-1 Configurable DPL properties for OPC Servers with LON DeviceDescriptionValue or Value range/ DefaultProperty/ Para-
meter
Basic
Common data class according to IEC61850
DPLCommon DataClass
Vendor
SPA parameter or simple text string,describing the vendor.
Default: ABBVendor
Specifies whether the vendor parametershall be interpreted as a SPA parameter.
True
False
Default: False
Vendor as a SPAParameter
Hardware Revision
SPA parameter or simple textstring,describing the hardware revision.
Default: 0Hardware Revision
Specifies whether the hardware revisionparameter shall be interpreted as a SPAparameter.
True
False
Default: False
Hardware Revisionas a SPA Parameter
Software Revision
SPA parameter string or simple textstring,describing the software revision.
Default: 0Software Revision
Specifies whether the software revisionparameter shall be interpreted as a SPAparameter.
True
False
Default: False
Software Revisionas a SPA Parameter
Serial Number
SPA parameter string or simple textstring,describing the serial number.
Default: 0Serial Number
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DescriptionValue or Value range/ DefaultProperty/ Para-meter
Specifies whether the serial numberparameter shall be interpreted as a SPAparameter.
True
False
Default: False
Serial Number as aSPA Parameter
Location
SPA parameter string or simple textstring,describing the location.
Default: 0Location
Specifies whether the location parametershall be interpreted as a SPA parameter.
True
False
Default: False
Location as a SPAParameter
Logical Node name plate (LPL)3.4.6.9.
Table 3.4.6.9-1 Configurable LPL properties for OPC Servers with LON DeviceDescriptionValue or Value range/ Default
/ExampleProperty/Para-meter
Basic
Common data class according to IEC61850
LPLCommon DataClass
Vendor
A SPA parameter or simple textstring,describing the vendor.
ABBVendor
Specifies whether the Vendor parametershall be interpreted as a SPA parameter.
True
False
Default: False
Vendor as a SPAParameter
Software Revision
A SPA parameter string or simpletextstring, describing the software revision.
0Software Revision
Specifies whether the software revisionparameter shall be interpreted as a SPAparameter.
True
False
Default: False
Software Revisionas a SPA Parameter
Description
A SPA parameter string or simpletextstring, describing the description forlogical node.
0Description
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DescriptionValue or Value range/ Default/Example
Property/Para-meter
Specifies whether the description para-meter shall be interpreted as a SPA para-meter.
True
False
Default: False
Description as aSPA Parameter
Measured value (MV)3.4.6.10.
Table 3.4.6.10-1 Configurable MV properties for OPC Servers with LON DeviceDescriptionValue or Value range/ Default
/ExampleProperty/Para-meter
Basic
Common data class according to IEC61850
MVCommon DataClass
Addresses
IEC address for indication0...65535
Default: 0
Indication Address
Scale and Unit
Scale to be used with this data objectDefault: NoneScale
Complex measured value (CMV)3.4.6.11.
Refer to Table 3.4.6.10-1 for configurable CMV properties for OPC Servers with a LONDevice.
WYE3.4.6.12.
Table 3.4.6.12-1 Configurable WYE properties for OPC Servers with LON DeviceDescriptionValue or Value range/ Default
/ExampleProperty/Para-meter
Basic
Common data class according to IEC61850
WYECommon DataClass
Addresses
IEC address for neutral0...65535
Default: 0
Neutral Address
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DescriptionValue or Value range/ Default/Example
Property/Para-meter
IEC address for phase A0...65535
Default: 0
Phase A Address
IEC address for phase B0...65535
Default: 0
Phase B Address
IEC address for phase C0...65535
Default: 0
Phase C Address
Scale and Unit
Scale for neutral to be used with this dataobject
Default: NoneScale for Neutral
Scale for phases to be used with this dataobject
Default: NoneScale for Phases
Delta (DEL)3.4.6.13.
Table 3.4.6.13-1 Configurable DEL properties for OPC Servers with LON DeviceDescriptionValue or Value range/ Default
/ExampleProperty/Para-meter
Basic
Common data class according to IEC61850
DELCommon DataClass
Addresses
IEC address for phase AB0...65535
Default: 0
Phase AB Address
IEC address for phase BC0...65535
Default: 0
Phase BC Address
IEC address for phase CA0...65535
Default: 0
Phase CA Address
Scale and Unit
Scale for phases to be used with this dataobject
Default: NoneScale
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Controllable single point (SPC)3.4.6.14.
You can select the subtype in the Object Properties ofSAB600.
Table 3.4.6.14-1 Configurable SPC properties for OPC Servers with LON DeviceDescriptionValue or Value range/ Default
/ExampleProperty/Para-meter
Basic
Common data class according to IEC61850
SPCCommon DataClass
Subtype of thecurrent dataobject: Indicationonly
Addresses
IEC address for indication0...65535
Default: 0
Indication Address
Subtype of thecurrent dataobject: IEC stylecommand
Addresses
IEC address for command0...65535
Default: 0
Command Address
DMCD-type to be used with commandsSingle command
Double command
Default: Single command
Command DMCD-Type
IEC address for indication0...65535
Default: 0
Indication Address
Subtype of thecurrent dataobject: Two SPApoints for Off andOn operation
Addresses
Command SPA channel number for com-mand
0...999
Default: 0
Command ChannelNumber
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DescriptionValue or Value range/ Default/Example
Property/Para-meter
Command SPA data category for com-mand
Input data
Output data
Setting
Variable
Memory data
Slave Status
Default: Variable
Command DataCategory
Command SPA data number for operateoff
0...999999
Default: 0
Command OperateOff Data
Command SPA data number for operateon
0...999999
Default: 0
Command OperateOn Data
IEC address for indication0...65535
Default: 0
Indication Address
Subtype of thecurrent dataobject: One SPApoint set with dif-ferent values
Addresses
Command SPA channel number for com-mand
0...999
Default: 0
Command ChannelNumber
Command SPA data category for com-mand
Input data
Output data
Setting
Variable
Memory data
Slave Status
Default: Variable
Command DataCategory
Command SPA value for operate off0...999999
Default: 0
Command OperateOff Value
Command SPA value for operate on0...999999
Default: 0
Command OperateOn Value
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DescriptionValue or Value range/ Default/Example
Property/Para-meter
SPA data number for command0...999999
Default: 0
Command SPAData Number
IEC address for indication0...65535
Default: 0
Indication Address
Subtype of thecurrent dataobject: One SPApoint set with dif-ferent valueswithout indicationaddress
Addresses
Command SPA channel number for com-mand
0...999
Default: 0
Command ChannelNumber
Command SPA data category for com-mand
Input data
Output data
Setting
Variable
Memory data
Slave Status
Default: Variable
Command DataCategory
Command SPA value for operate off0...999999
Default: 0
Command OperateOff Value
Command SPA value for operate on0...999999
Default: 0
Command OperateOn Value
SPA data number for command0...999999
Default: 0
Command SPAData Number
Controllable double point (DPC)3.4.6.15.
You can select the subtype in the Object Properties ofSAB600.
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Table 3.4.6.15-1 Configurable DPC properties for OPC Servers with LON DeviceDescriptionValue or Value range/ Default
/ExampleProperty/Para-meter
Basic
Common data class according to IEC61850
DPCCommon DataClass
Subtype of thecurrent dataobject: Indicationonly
Addresses
IEC address for indication0...65535
Default: 0
Indication Address
Subtype of thecurrent dataobject: IEC stylecommand
Addresses
IEC address for command0...65535
Default: 0
Command Address
DMCD-type to be usedSingle command
Double command
Default: Single command
Command DMCD-Type
IEC address for indication0...65535
Default: 0
Indication Address
IEC address for selected indication0...65535
Default: 0
Selected Address
Subtype of thecurrent dataobject: IEC stylecommand withqualifier
Addresses
IEC address for command0...65535
Default: 0
Command Address
DMCD-type to be usedSingle command
Double command
Default: Single command
Command DMCD-Type
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DescriptionValue or Value range/ Default/Example
Property/Para-meter
IEC address for indication0...65535
Default: 0
Indication Address
IEC address for selected indication0...65535
Default: 0
Selected Address
Interlock and Syn-chro Check Over-ride
Qualifier for interlock override0...255
Default: 1
Interlock OverrideQualifier
Qualifier for synchrocheck override0...255
Default: 1
Synchro CheckOverride Qualifier
Subtype of thecurrent dataobject: Four SPApoints for Off andOn operation
Addresses
Command SPA data number for cancel0...999999
Default: 10
Command CancelSPA Data Number
Command SPA data number for operateoff
0...999999
Default: 11
Command OperateOff SPA Data Num-ber
Command SPA data number for operateon
0...999999
Default: 11
Command OperateOn SPA Data Num-ber
Command SPA data number for select off0...999999
Default: 6
Command SelectOff SPA Data Num-ber
Command SPA data number for select on0...999999
Default: 7
Command SelectOn SPA Data Num-ber
Command SPA channel number for com-mand
0...999
Default: 120
Command SPAChannel Number
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DescriptionValue or Value range/ Default/Example
Property/Para-meter
SPA data category for commandInput data
Output data
Setting
Variable
Memory Data
Slave Status
Default: Variable
Command SPAData Category
IEC address for indication0...65535
Default: 0
Indication Address
IEC address for selected indication0...65535
Default: 0
Selected Address
Subtype of thecurrent dataobject: One SPApoint set with dif-ferent values
Addresses
Command SPA value for cancel0...999999
Default: 256
Command CancelSPA Data Value
Command SPA value for operate off0...999999
Default: 2048
Command OperateOff SPA Data Value
Command SPA value for operate on0...999999
Default: 2048
Command OperateOn SPA Data Value
Command SPA value for select off0...999999
Default: 512
Command SelectOff SPA Data Value
Command SPA value for select on0...999999
Default: 1024
Command SelectOn SPA Data Value
Command SPA channel number for com-mand
0...999
Default: 120
Command SPAChannel Number
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DescriptionValue or Value range/ Default/Example
Property/Para-meter
SPA data category for commandInput data
Output data
Setting
Variable
Memory Data
Slave Status
Default: Variable
Command SPAData Category
SPA data number for command0...999999
Default: 521
Command SPAData Number
IEC address for indication0...65535
Default: 0
Indication Address
IEC address for selected indication0...65535
Default: 0
Selected Address
Subtype of thecurrent dataobject: Three SPApoint for Off andOn operation
Addresses
SPA channel number for selection0..999
Default: 1
Selection SPAChannel Number
SPA data category for selectionInput data
Output data
Setting
Variable
Memory Data
Slave Status
Default: Variable
Selection SPA DataCategory
SPA data number for selection0..9999999
Default: 5105
Selection SPA DataNumber
SPA channel number for Operation0..999
Default: 1
Operation SPAChannel Number
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DescriptionValue or Value range/ Default/Example
Property/Para-meter
SPA data category for operationInput data
Output data
Setting
Variable
Memory Data
Slave Status
Default: Variable
Operation SPA DataCategory
SPA data number for operation0..9999999
Default: 5106
Operation SPA DataNumber
SPA channel number for cancel0..999
Default: 1
Cancel SPA Chan-nel Number
SPA data category for cancelInput data
Output data
Setting
Variable
Memory Data
Slave Status
Default: Variable
Cancel SPA DataCategory
SPA data number for cancel0..9999999
Default: 5107
Cancel SPA DataNumber
IEC address for indication0..65535
Default: 0
Indication Address
IEC address for selected indication0..65535
Default: 0
Selected Address
Controllable integer status (INC)3.4.6.16.
You can select the subtype in the Object Properties ofSAB600.
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Table 3.4.6.16-1 Configurable INC properties for OPC Servers with LON DeviceDescriptionValue or Value range/ Default
/ExampleProperty/Para-meter
Basic
Common data class according to IEC61850
INCCommon DataClass
Subtype of thecurrent dataobject: IEC styleaddressing
Addresses
IEC address for command0...65535
Default: 0
Command Address
IEC address for indication0...65535
Default: 0
Indication Address
Scale and Unit
Scale to be used with this data objectDefault: NoneScale
Subtype of thecurrent dataobject: SPA Para-meter with IECstyle addressing
Addresses
IEC address for indication0...65535
Default: 0
Indication Address
SPA parameter or IEC address for com-mand
Default: NoneSPA or IEC Addressfor Command
A SPA parameter for getting the initialvalue from the process. Further updatesare read by the IEC address.
Default: NoneSPA Parameter forInitial Value
Scale and Unit
Scale to be used with this data objectDefault: NoneScale
Binary controlled step position information (BSC)3.4.6.17.
You can select the subtype in the Object Properties ofSAB600.
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Table 3.4.6.17-1 Configurable BSC properties for OPC Servers with LON DeviceDescriptionValue or Value range/ Default
/ExampleProperty/Para-meter
Basic
Common data class according to IEC61850
BSCCommon DataClass
Subtype of thecurrent dataobject: IEC stylecommand
Addresses
IEC address for command0...65535
Default: 0
Command Address
IEC address for position0...65535
Default: 0
Position Address
Subtype of thecurrent dataobject: Two SPApoints for Off andOn operation
Addresses
SPA channel number for command0...999
Default: 120
Command SPAChannel Number
SPA data category for commandInput data
Output data
Setting
Variable
Memory Data
Slave Status
Default: Variable
Command SPAData Category
SPA data number for operate higher0...65535
Default: 3
Command SPAData Number forHigher
SPA data number for operate lower0...65535
Default: 3
Command SPAData Number forLower
IEC address for position0...65535
Default: 0
Position Address
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DescriptionValue or Value range/ Default/Example
Property/Para-meter
Subtype of thecurrent dataobject: One SPApoint set with dif-ferent values
Addresses
SPA channel number for command0...999
Default: 120
Command SPAChannel Number
SPA data category for commandInput data
Output data
Setting
Variable
Memory Data
Slave Status
Default: Variable
Command SPAData Category
SPA data number for command0...999999
Default: 521
Command SPAData Number
SPA value for operate higher0...65535
Default: 4
Command SPAValue for Higher
SPA value for operate lower0...65535
Default: 8
Command SPAValue for Lower
IEC address for position0...65535
Default: 0
Position Address
Integer controlled step position information (ISC)3.4.6.18.
Table 3.4.6.18-1 Configurable ISC properties for OPC Servers with LON DeviceDescriptionValue or Value range/ Default
/ExampleProperty/Para-meter
Basic
Common data class according to IEC61850
ISCCommon DataClass
Addresses
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DescriptionValue or Value range/ Default/Example
Property/Para-meter
IEC address for command0...65535
Default: 0
Command Address
IEC address for position0...65535
Default: 0
Position Address
Configuring data objects for controllable analogue information
There is one data object that provides controllable analogue information: Analogue setpoint (APC). It is described in 3.4.6.19, Analogue set point (APC).
Parameters are stored in Object Properties of SAB600. The actual configuration is per-formed as described in 3.4.1, General about configuring objects.
Analogue set point (APC)3.4.6.19.
Table 3.4.6.19-1 Configurable APC properties for OPC Servers with LON DeviceDescriptionValue or Value range/ Default
/ExampleProperty/Para-meter
Basic
Common data class according to IEC61850
APCCommon DataClass
Addresses
IEC address for command0...65535
Default: 1000
Command Address
Configuring data objects for LON SPA Device/LON SPA Module3.4.7.
General about configuring data objects for LON SPA Device/LONSPA Module status information
3.4.7.1.
LON SPA Device/ Module supports data objects for status, measurand, controllablestatus, and controllable analogue information.
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Configuring data objects for LON SPA Device/ LON SPA Modulestatus information
LON SPA Device/ Module supports eight data object types that provide status informa-tion:
• 3.4.7.2, Single point status (LSG SPS)• 3.4.7.3, Double point status (LSG DPS)• 3.4.7.4, Integer status (LSG INS)• 3.4.7.5, Protection activation information (LSG ACT)• 3.4.7.6, Directional protection activation information (LSG ACD)• 3.4.7.7, Binary counter reading (LSG BCR)• 3.4.7.8, Device name plate (LSG DPL)• 3.4.7.9, Logical node name plate (LSG LPL)
Single point status (LSG SPS)3.4.7.2.
Table 3.4.7.2-1 Configurable SPS properties for LON SPA Device/ModuleDescriptionValue or Value range/ DefaultProperty/Para-
meter
Basic
Common data class according to IEC61850
SPSCommon DataClass
Addresses
SPA channel number for indication0...999
Default: 0
SPA Channel Num-ber
SPA data category for indicationInput Data
Output Data
Setting
Variable
Memory Data
Slave Status
Default: Input Data
SPA Data Category
SPA data number for indication0...999
Default: 0
SPA Data Number
SPA off event code0...999999
Default: 0
SPA Off Event Code
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DescriptionValue or Value range/ DefaultProperty/Para-meter
SPA on event code0...999999
Default: 0
SPA On Event Code
Scale and Unit
Scale to be used with this data objectDefault: NoneScale
Double point status (LSG DPS)3.4.7.3.
Table 3.4.7.3-1 Configurable DPS properties for LON SPA Device/ModuleDescriptionValue or Value range/ DefaultProperty/Para-
meter
Basic
Common data class according to IEC61850
DPSCommon DataClass
Addresses
SPA channel number for indication0...999
Default: 0
SPA Channel Num-ber
SPA data category for indicationInput Data
Output Data
Setting
Variable
Memory Data
Slave Status
Default: Input Data
SPA Data Category
SPA data number for indication0...999
Default: 0
SPA Data Number
SPA intermediate event code0...999999
Default: 0
SPA IntermediateEvent Code
SPA invalid event code0...999999
Default: 0
SPA Invalid EventCode
SPA off event code0...999999
Default: 0
SPA Off Event Code
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DescriptionValue or Value range/ DefaultProperty/Para-meter
SPA on event code0...999999
Default: 0
SPA On Event Code
Use reversed valuesTrue
False
Default: False
Use Reversed
Scale and Unit
Scale to be used with this data objectDefault: NoneScale
Integer status (LSG INS)3.4.7.4.
Table 3.4.7.4-1 Configurable INS properties for LON SPA Device/ModuleDescriptionValue or Value range/ DefaultProperty/Para-
meter
Basic
Common data class according to IEC61850
INSCommon DataClass
Addresses
LON base typeUnsigned 16
Signed 16
Unsigned 8
Signed 8
Signed 32
Float IEE754
Structure
Default: Signed 32
LON Base Type
Network variable selector-1...16384
Default: -1
Selector
Scale and Unit
Scale to be used with this data objectDefault: NoneScale
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Protection activation information (LSG ACT)3.4.7.5.
Table 3.4.7.5-1 Configurable ACT properties for LON SPA Device/ModuleDescriptionValue or Value range/ DefaultProperty/Para-
meter
Basic
Common data class according to IEC61850
ACTCommon DataClass
General Addresses
General SPA channel number for commu-nication
0...999
Default: 0
General SPA Chan-nel Number
General SPA data category for communic-ation
Input Data
Output Data
Setting
Variable
Memory Data
Slave Status
Default: Input Data
General SPA DataCategory
General SPA data number for communic-ation
0...999
Default: 0
General SPA DataNumber
SPA off event code0...999999
Default: 0
SPA Off Event Code
SPA on event code0...999999
Default: 0
SPA On Event Code
Phase AAddresses
Phase A SPA channel number for commu-nication
0...999
Default: 0
Phase A SPAChannel Number
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DescriptionValue or Value range/ DefaultProperty/Para-meter
Phase A SPA data category for communic-ation
Input Data
Output Data
Setting
Variable
Memory Data
Slave Status
Default: Input Data
Phase A SPA DataCategory
Phase A SPA data number for communic-ation
0...999
Default: 0
Phase A SPA DataNumber
SPA off event code0...999999
Default: 0
SPA Off Event Code
SPA on event code0...999999
Default: 0
SPA On Event Code
Phase BAddresses
Phase B SPA channel number for commu-nication
0...999
Default: 0
Phase B SPAChannel Number
Phase B SPA data category for communic-ation
Input Data
Output Data
Setting
Variable
Memory Data
Slave Status
Default: Input Data
Phase B SPA DataCategory
Phase B SPA data number for communic-ation
0...999
Default: 0
Phase B SPA DataNumber
SPA off event code0...999999
Default: 0
SPA Off Event Code
SPA on event code0...999999
Default: 0
SPA On Event Code
Phase CAddresses
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DescriptionValue or Value range/ DefaultProperty/Para-meter
Phase C SPA channel number for commu-nication
0...999
Default: 0
Phase C SPAChannel Number
Phase C SPA data category for communic-ation
Input Data
Output Data
Setting
Variable
Memory Data
Slave Status
Default: Input Data
Phase C SPA DataCategory
Phase C SPA data number for communic-ation
0...999
Default: 0
Phase C SPA DataNumber
Phase C SPA off event code0...999999
Default: 0
Phase C SPA OffEvent Code
Phase C SPA on event code0...999999
Default: 0
Phase C SPA OnEvent Code
Neutral Addresses
Neutral SPA channel number for commu-nication
0...999
Default: 0
Neutral SPA Chan-nel Number
Neutral SPA data category for communic-ation
Input Data
Output Data
Setting
Variable
Memory Data
Slave Status
Default: Input Data
Neutral SPA DataCategory
Neutral SPA data number for communica-tion
0...999
Default: 0
Neutral SPA DataNumber
Neutral SPA off event code0...999999
Default: 0
Neutral SPA OffEvent Code
Neutral SPA on event code0...999999
Default: 0
Neutral SPA OnEvent Code
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Directional protection activation information (LSG ACD)3.4.7.6.
Table 3.4.7.6-1 Configurable ACD properties for LON SPA Device/ModuleDescriptionValue or Value Range/
DefaultProperty/ Para-meter
Basic
Common data class according to IEC61850
ACDCommon DataClass
General Addresses
General SPA channel number for commu-nication
0...999
Default: 0
General SPA Chan-nel Number
General SPA data category for communic-ation
Input data
Output data
Setting
Variable
Memory data
Slave status
Default: Input data
General SPA DataCategory
General SPA data number for communic-ation
0...999
Default: 0
General SPA DataNumber
SPA off event code0...999999
Default: 0
SPA Off Event Code
SPA on event code0...999999
Default: 0
SPA On Event Code
Phase AAddresses
Phase A SPA channel number for commu-nication
0...999
Default: 0
Phase A SPAChannel Number
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DescriptionValue or Value Range/Default
Property/ Para-meter
Phase A SPA data category for communic-ation
Input data
Output data
Setting
Variable
Memory data
Slave status
Default: Input data
Phase A SPA DataCategory
Phase A SPA data number for communic-ation
0...999
Default: 0
Phase A SPA DataNumber
SPA off event code0...999999
Default: 0
SPA Off Event Code
SPA on event code0...999999
Default: 0
SPA On Event Code
Phase BAddresses
Phase B SPA channel number for commu-nication
0...999
Default: 0
Phase B SPAChannel Number
Phase B SPA data category for communic-ation
Input data
Output data
Setting
Variable
Memory data
Slave status
Default: Input data
Phase B SPA DataCategory for commu-nication
Phase B SPA data number for communic-ation
0...999
Default: 0
Phase B SPA DataNumber for commu-nication
SPA off event code0...999999
Default: 0
SPA Off Event Code
SPA on event code0...999999
Default: 0
SPA On Event Code
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DescriptionValue or Value Range/Default
Property/ Para-meter
Phase CAddresses
Phase C SPA channel number for commu-nication
0...999
Default: 0
Phase C SPAChannel Number
Phase C SPA data category for communic-ation
Input data
Output data
Setting
Variable
Memory data
Slave status
Default: Input data
Phase C SPA DataCategory
Phase C SPA data number for communic-ation
0...999
Default: 0
Phase C SPA DataNumber
SPA off event code0...999999
Default: 0
SPA Off Event Code
SPA on event code0...999999
Default: 0
SPA On Event Code
Neutral Addresses
Neutral SPA channel number for commu-nication
0...999
Default: 0
Neutral SPA Chan-nel Number
Neutral SPA data category for communic-ation
Input data
Output data
Setting
Variable
Memory data
Slave status
Default: Input data
Neutral SPA DataCategory
Neutral SPA data number for communica-tion
0...999
Default: 0
Neutral SPA DataNumber
SPA off event code0...999999
Default: 0
SPA Off Event Code
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DescriptionValue or Value Range/Default
Property/ Para-meter
SPA on event code0...999999
Default: 0
SPA On Event Code
DirectionAddresses
Bit number for indicating protection activa-tion direction
0Bit number for direc-tion
SPA parameter string protection activationdirection
Default: NoneSPA parameter fordirection
Binary counter reading (LSG BCR)3.4.7.7.
Table 3.4.7.7-1 Configurable BCR properties for LON SPA Device/ModuleDescriptionValue or Value Range/
DefaultProperty/ Para-meter
Basic
Common data class according to IEC61850
BCRCommon DataClass
Addresses
LON base typeUnsigned 16
Signed 16
Unsigned 8
Signed 8
Signed 32
Float IEE754
Structure
Default: Signed 32
LON Base Type
Network variable selector-1...16384
Default: -1
Selector
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Device name plate (LSG DPL)3.4.7.8.
Table 3.4.7.8-1 Configurable DPL properties for LON SPA Device/ModuleDescriptionValue or Value Range/
DefaultProperty/ Para-meter
Basic
Common data class according to IEC61850
DPLCommon DataClass
Vendor
A SPA parameter or simple text string,describing the vendor
Default: ABBVendor
Specifies whether the vendor parameteris interpreted as a SPA parameter
True
False
Default: False
Vendor as a SPAParameter
Hardware Revision
A SPA parameter or simple text string,describing the hardware revision
Default: 0Hardware Revision
Specifies whether the hardware revisionparameter is interpreted as a SPA para-meter
True
False
Default: False
Hardware Revisionas a SPA Parameter
Software Revision
A SPA parameter string or simple textstring, describing the software revision
Default: 0Software Revision
Specifies whether the software revisionparameter is interpreted as a SPA para-meter
True
False
Default: False
Software Revisionas a SPA Parameter
Serial Number
A SPA parameter string or simple textstring, describing the serial number
Default: 0Serial Number
Specifies whether the serial numberparameter is interpreted as a SPA para-meter
True
False
Default: False
Serial Number as aSPA Parameter
Location
A SPA parameter string or simple textstring, describing the location
Default: 0Location
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DescriptionValue or Value Range/Default
Property/ Para-meter
Specifies whether the location parameteris interpreted as a SPA parameter
True
False
Default: False
Location as a SPAParameter
Logical node name plate (LSG LPL)3.4.7.9.
Table 3.4.7.9-1 Configurable LPL properties for LON SPA Device/ModuleDescriptionValue or Value range/ DefaultProperty/ Para-
meter
Basic
Common data class according to IEC61850
LPLCommon DataClass
Vendor
SPA parameter or simple textstring,describing the vendor.
Default: ABBVendor
Specifies whether the vendor parametershall be interpreted as a SPA parameter.
True
False
Default: False
Vendor as a SPAParameter
Software Revision
SPA parameter string or simple textstring,describing the software revision.
Default: 0Software Revision
Specifies whether the software revisionparameter shall be interpreted as a SPAparameter.
True
False
Default: False
Software Revisionas a SPA Parameter
Description
SPA parameter string or simple textstring,describing the description for logical node.
Default: 0Description
Specifies whether the description para-meter shall be interpreted as a SPA para-meter.
True
False
Default: False
Description as aSPA Parameter
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Configuring data objects for LON SPA Device/ Module measurandinformation
LON SPA Device/ Module supports four data object types that provide measurandinformation:
• 3.4.7.10, Measured value (LSG MV)• 3.4.7.11, Complex measured value (LSG CMV)• 3.4.7.12, WYE (LSG WYE)• 3.4.7.13, Delta (LSG DEL)
Parameters are stored in Object Properties of SAB600, see the tables for each data objecttype.
Measured value (LSG MV)3.4.7.10.
Table 3.4.7.10-1 Configurable MV properties for LON SPA Device/ModuleDescriptionValue or Value range/ DefaultProperty/ Para-
meter
Basic
Common data class according to IEC61850
MVCommon DataClass
Addresses
LON base typeUnsigned 16
Signed 16
Unsigned 8
Signed 8
Signed 32
Float IEE754
Structure
Default: Signed 32
LON Base Type
Network variable selector-1...16384
Default: -1
Selector
Scale and Unit
Scale to be used with this data objectDefault: NoneScale
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Complex measured value (LSG CMV)3.4.7.11.
Table 3.4.7.11-1 Configurable CMV properties for LON SPA Device/ModuleDescriptionValue or Value range/ DefaultProperty/ Para-
meter
Basic
Common data class according to IEC61850
CMVCommon DataClass
Addresses
LON base typeUnsigned 16
Signed 16
Unsigned 8
Signed 8
Signed 32
Float IEE754
Structure
Default: Signed 32
LON Base Type
Network variable selector-1...16384
Default: -1
Selector
Scale and Unit
Scale to be used with this data objectDefault: NoneScale
WYE (LSG WYE)3.4.7.12.
Table 3.4.7.12-1 Configurable WYE properties for LON SPA Device/ModuleDescriptionValue or Value range/ DefaultProperty/ Para-
meter
Basic
Common data class according to IEC61850
WYECommon DataClass
Addresses
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DescriptionValue or Value range/ DefaultProperty/ Para-meter
LON base typeUnsigned 16
Signed 16
Unsigned 8
Signed 8
Signed 32
Float IEE754
Structure
Default: Signed 32
LON Base Type
Network variable selector-1...16384
Default: -1
NeutralSelector
Network variable selector-1...16384
Default: -1
PhaseASelector
Network variable selector-1...16384
Default: -1
PhaseBSelector
Network variable selector-1...16384
Default: -1
PhaseCSelector
Scale and Unit
Scale for neutral to be used with this dataobject
Default: NoneScale for Neutral
Scale for phases to be used with this dataobject
Default: NoneScale for Phases
Delta (LSG DEL)3.4.7.13.
Table 3.4.7.13-1 Configurable DEL properties for LON SPA Device/ModuleDescriptionValue or Value range/ DefaultProperty/ Para-
meter
Basic
Common data class according to IEC61850
DELCommon DataClass
Addresses
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DescriptionValue or Value range/ DefaultProperty/ Para-meter
LON base typeUnsigned 16
Signed 16
Unsigned 8
Signed 8
Signed 32
Float IEE754
Structure
Default: Signed 32
LON Base Type
Network variable selector-1...16384
Default: -1
Selector for PhaseAB
Network variable selector-1...16384
Default: -1
Selector for PhaseBC
Network variable selector-1...16384
Default: -1
Selector for PhaseCA
Scale and Unit
Scale for phases to be used with this dataobject
Default: NoneScale for Phases
Configuring data objects for LON SPA Device/ Module controllablestatus information
There are five data objects that provide controllable status information for LON SPADevice/ Module:
• 3.4.7.14, Controllable single point (LSG SPC)• 3.4.7.15, Controllable double point (LSG DPC)• 3.4.7.16, Controllable integer status (LSG INC)• 3.4.7.17, Binary controlled step position information (LSG BSC)• 3.4.7.18, Integer controlled step position information (LSG ISC)
Controllable single point (LSG SPC)3.4.7.14.
You can select the subtype in the Object Properties ofSAB600.
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Table 3.4.7.14-1 Configurable SPC properties for LON SPA Device/ModuleDescriptionValue or Value range/ DefaultProperty/ Para-
meter
Basic
Common data class according to IEC61850
SPCCommon DataClass
Subtype of thecurrent dataobject: One SPApoint for operation
CommandAddresses
SPA channel number for command0...999
Default: 0
SPA CommandChannel Number
SPA data category for commandInput Data
Output Data
Setting
Variable
Memory Data
Slave Status
Default: Variable
SPA CommandData Category
SPA data number for command0...999
Default: 0
SPA CommandData Number
Value for operate off0...999999
Default: 0
SPA CommandOperate Off Value
Value for operate on0...999999
Default: 0
SPA CommandOperate On Value
IndicationAddresses
SPA channel number for indication0...999
Default: 0
SPA IndicationChannel Number
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DescriptionValue or Value range/ DefaultProperty/ Para-meter
SPA data category for indicationInput Data
Output Data
Setting
Variable
Memory Data
Slave Status
Default: Variable
SPA Indication DataCategory
SPA data number for indication0...999
Default: 0
SPA Indication DataNumber
SPA off event code0...999999
Default: 0
SPA Indication OffEvent Code
SPA on event code0...999999
Default: 0
SPA Indication OnEvent Code
Subtype of thecurrent dataobject: Two SPApoints for opera-tion
CommandAddresses
SPA channel number for command0...999
Default: 0
SPA CommandChannel Number
SPA data category for commandInput Data
Output Data
Setting
Variable
Memory Data
Slave Status
Default: Variable
SPA CommandData Category
Data number for operate off0...999999
Default: 0
SPA CommandOperate Off Data
Data number for operate on0...999999
Default: 0
SPA CommandOperate On Data
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DescriptionValue or Value range/ DefaultProperty/ Para-meter
IndicationAddresses
SPA channel number for indication0...999
Default: 0
SPA IndicationChannel Number
SPA data category for indicationInput Data
Output Data
Setting
Variable
Memory Data
Slave Status
Default: Variable
SPA Indication DataCategory
SPA data number for indication0...999
Default: 0
SPA Indication DataNumber
SPA off event code0...999999
Default: 0
SPA Indication OffEvent Code
SPA on event code0...999999
Default: 0
SPA Indication OnEvent Code
Controllable double point (LSG DPC)3.4.7.15.
You can select the subtype in the Object Properties ofSAB600.
Table 3.4.7.15-1 Configurable DPC properties for LON SPA Device/ModuleDescriptionValue or Value range/ DefaultProperty/ Para-
meter
Basic
Common data class according to IEC61850
DPCCommon DataClass
Subtype of thecurrent dataobject: Indicationonly
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DescriptionValue or Value range/ DefaultProperty/ Para-meter
IndicationAddresses
SPA channel number for indication0...999
Default: 0
SPA IndicationChannel Number
SPA data category for indicationInput Data
Output Data
Setting
Variable
Memory Data
Slave Status
Default: Input Data
SPA Indication DataCategory
SPA data number for indication0...999
Default: 0
SPA Indication DataNumber
SPA intermediate event code0...999999
Default: 0
SPA IndicationIntermediate EventCode
SPA invalid event code0...999999
Default: 0
SPA IndicationInvalid Event Code
SPA off event code0...999999
Default: 0
SPA Indication OffEvent Code
SPA on event code0...999999
Default: 0
SPA Indication OnEvent Code
Use reversed valuesTrue
False
Default: False
Use Reversed
Scale and Unit
Scale to be used with this data objectDefault: NoneScale
Subtype of thecurrent dataobject: One SPApoint for operation
CommandAddresses
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DescriptionValue or Value range/ DefaultProperty/ Para-meter
Value for cancel0...999999
Default: 0
SPA CommandCancel Value
SPA channel number for command0...999
Default: 0
SPA CommandChannel Number
SPA data category for commandInput Data
Output Data
Setting
Variable
Memory Data
Slave Status
Default: Input Data
SPA CommandData Category
SPA data number for command0...999
Default: 0
SPA CommandData Number
Value for operate off0...999999
Default: 0
SPA CommandOperate Off Value
Value for operate on0...999999
Default: 0
SPA CommandOperate On Value
Value for select off0...999999
Default: 0
SPA CommandSelect Off Value
SPA command value for select on0...999999
Default: 0
SPA CommandSelect On Value
SelectedAddresses
SPA channel number for selected inform-ation. If both the channel and data numberare set to 0, then selection information issimulated.
0...999
Default: 0
SPA SelectedChannel Number
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DescriptionValue or Value range/ DefaultProperty/ Para-meter
SPA data category for selected informationInput Data
Output Data
Setting
Variable
Memory Data
Slave Status
Default: Input Data
SPA Selected DataCategory
SPA data number for selected information.If both the channel and data number areset to 0, then selection information is sim-ulated.
0...999
Default: 0
SPA Selected DataNumber
SPA off event code for selected informa-tion
0...999999
Default: 0
SPA Selected OffEvent Code
SPA on event code for selected informa-tion
0...999999
Default: 0
SPA Selected OnEvent Code
IndicationAddresses
SPA channel number for indication0...999
Default: 0
SPA IndicationChannel Number
SPA data category for indicationInput Data
Output Data
Setting
Variable
Memory Data
Slave Status
Default: Input Data
SPA Indication DataCategory
SPA data number for indication0...999
Default: 0
SPA Indication DataNumber
SPA intermediate event code0...999999
Default: 0
SPA IndicationIntermediate EventCode
SPA invalid event code0...999999
Default: 0
SPA IndicationInvalid Event Code
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DescriptionValue or Value range/ DefaultProperty/ Para-meter
SPA off event code0...999999
Default: 0
SPA Indication OffEvent Code
SPA on event code0...999999
Default: 0
SPA Indication OnEvent Code
Use reversed valuesTrue
False
Default: False
Use Reversed
Scale and Unit
Scale to be used with this data objectDefault: NoneScale
Subtype of thecurrent dataobject: Four SPApoints for opera-tion
CommandAddresses
Data number for cancel0...999999
Default: 11
SPA CommandCancel Data
SPA channel number for command0...999
Default: 0
SPA CommandChannel Number
SPA data category for commandInput Data
Output Data
Setting
Variable
Memory Data
Slave Status
Default: Input Data
SPA CommandData Category
Data number for operate off0...999999
Default: 10
SPA CommandOperate Off Data
Data number for operate on0...999999
Default: 10
SPA CommandOperate On Data
Data number for select off0...999999
Default: 7
SPA CommandSelect Off Data
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DescriptionValue or Value range/ DefaultProperty/ Para-meter
Data number for select on0...999999
Default: 6
SPA CommandSelect On Data
SelectedAddresses
SPA channel number for selected inform-ation. If both the channel and data numberare set to 0, then selection information issimulated.
0...999
Default: 0
SPA SelectedChannel Number
SPA data category for selected informationInput Data
Output Data
Setting
Variable
Memory Data
Slave Status
Default: Input Data
SPA Selected DataCategory
SPA data number for selected information.If both the channel and data number areset to 0, then selection information is sim-ulated.
0...999
Default: 0
SPA Selected DataNumber
SPA off event code for selected informa-tion
0...999999
Default: 0
SPA Selected OffEvent Code
SPA on event code for selected informa-tion
0...999999
Default: 0
SPA Selected OnEvent Code
IndicationAddresses
SPA channel number for indication0...999
Default: 0
SPA IndicationChannel Number
SPA data category for indicationInput Data
Output Data
Setting
Variable
Memory Data
Slave Status
Default: Input Data
SPA Indication DataCategory
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DescriptionValue or Value range/ DefaultProperty/ Para-meter
SPA data number for indication0...999
Default: 0
SPA Indication DataNumber
SPA intermediate event code0...999999
Default: 0
SPA IndicationIntermediate EventCode
SPA invalid event code0...999999
Default: 0
SPA IndicationInvalid Event Code
SPA off event code0...999999
Default: 0
SPA Indication OffEvent Code
SPA on event code0...999999
Default: 0
SPA Indication OnEvent Code
Use reversed valuesTrue
False
Default: False
Use Reversed
Scale and Unit
Scale to be used with this data objectDefault: NoneScale
Subtype of thecurrent dataobject:Three SPA pointfor operation
Addresses
SPA channel number for selection0..999
Default: 1
Selection SPAChannel Number
SPA data category for selectionInput data
Output data
Setting
Variable
Memory Data
Slave Status
Default: Variable
Selection SPA DataCategory
SPA data number for selection0..9999999
Default: 5105
Selection SPA DataNumber
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DescriptionValue or Value range/ DefaultProperty/ Para-meter
SPA channel number for Operation0..999
Default: 1
Operation SPAChannel Number
SPA data category for operationInput data
Output data
Setting
Variable
Memory Data
Slave Status
Default: Variable
Operation SPA DataCategory
SPA data number for operation0..9999999
Default: 5106
Operation SPA DataNumber
SPA channel number for cancel0..999
Default: 1
Cancel SPA Chan-nel Number
SPA data category for cancelInput data
Output data
Setting
Variable
Memory Data
Slave Status
Default: Variable
Cancel SPA DataCategory
SPA data number for cancel0..9999999
Default: 5107
Cancel SPA DataNumber
SelectedAddresses
SPA channel number for selected inform-ation. If both the channel and data numberare set to 0, then selection information issimulated.
0...999
Default: 0
SPA SelectedChannel Number
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DescriptionValue or Value range/ DefaultProperty/ Para-meter
SPA data category for selected informationInput Data
Output Data
Setting
Variable
Memory Data
Slave Status
Default: Input Data
SPA Selected DataCategory
SPA data number for selected information.If both the channel and data number areset to 0, then selection information is sim-ulated.
0...999
Default: 0
SPA Selected DataNumber
SPA off event code for selected informa-tion
0...999999
Default: 0
SPA Selected OffEvent Code
SPA on event code for selected informa-tion
0...999999
Default: 0
SPA Selected OnEvent Code
IndicationAddresses
SPA channel number for indication0...999
Default: 0
SPA IndicationChannel Number
SPA data category for indicationInput Data
Output Data
Setting
Variable
Memory Data
Slave Status
Default: Input Data
SPA Indication DataCategory
SPA data number for indication0...999
Default: 0
SPA Indication DataNumber
SPA intermediate event code0...999999
Default: 0
SPA IndicationIntermediate EventCode
SPA invalid event code0...999999
Default: 0
SPA IndicationInvalid Event Code
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DescriptionValue or Value range/ DefaultProperty/ Para-meter
SPA off event code0...999999
Default: 0
SPA Indication OffEvent Code
SPA on event code0...999999
Default: 0
SPA Indication OnEvent Code
Use reversed valuesTrue
False
Default: False
Use Reversed
Controllable integer status (LSG INC)3.4.7.16.
Table 3.4.7.16-1 Controllable INC properties for LON SPA Device/ModuleDescriptionValue or Value range/ DefaultProperty/ Para-
meter
Basic
Common data class according to IEC61850
INCCommon DataClass
Addresses
LON base typeUnsigned 16
Signed 16
Unsigned 8
Signed 8
Signed 32
Float IEE754
Structure
Default: Signed 32
LON Base Type
Network variable selector-1...16 384
Default: -1
Selector
SPA channel number for command0...999
Default: 0
SPA CommandChannel Number
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DescriptionValue or Value range/ DefaultProperty/ Para-meter
SPA data category for commandInput data
Output data
Setting
Variable
Memory data
Slave status
Default: Input data
SPA CommandData Category
SPA data number for command0...999
Default: 0
SPA CommandData Number
Scale and Unit
Scale to be used with this data objectDefault: NoneScale
Binary controlled step position information (LSG BSC)3.4.7.17.
You can select the subtype in the Object Properties ofSAB600.
Table 3.4.7.17-1 Configurable BSC properties for LON SPA Device/ModuleDescriptionValue or Value range/ DefaultProperty/ Para-
meter
Basic
Common data class according to IEC61850
BSCCommon DataClass
Subtype of thecurrent dataobject: One SPApoint for operation
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DescriptionValue or Value range/ DefaultProperty/ Para-meter
LON base typeUnsigned 16
Signed 16
Unsigned 8
Signed 8
Signed 32
Float IEE754
Structure
Default: Signed 32
LON Base Type
Network variable selector-1...16384
Default: -1
Selector
SPA channel number for command0...999
Default: 0
SPA CommandChannel Number
SPA data category for commandInput data
Output data
Setting
Variable
Memory data
Slave status
Default: Input data
SPA CommandData Category
SPA data number for command0...999
Default: 0
SPA CommandData Number
SPA data number for operate higher0...65535
Default: 0
SPA CommandHigher Value
SPA data number for operate lower0...65535
Default: 0
SPA CommandLower Value
Scale and Unit
Scale to be used with this data objectDefault: NoneScale
Subtype of thecurrent dataobject: Two SPApoints for opera-tion
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DescriptionValue or Value range/ DefaultProperty/ Para-meter
LON Base TypeUnsigned 16
Signed 16
Unsigned 8
Signed 8
Signed 32
Float IEE754
Structure
Default: Signed 32
LON base type
Network variable selector-1...16384
Default: -1
Selector
SPA channel number for command0...999
Default: 0
SPA CommandChannel Number
SPA data category for commandInput data
Output data
Setting
Variable
Memory data
Slave status
Default: Input data
SPA CommandData Category
SPA data number for operate higher0...65535
Default: 0
SPA CommandHigher Data
SPA data number for operate lower0...65535
Default: 0
SPA CommandLower Data
Scale and Unit
Scale to be used with this data objectDefault: NoneScale
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Integer controlled step position information (LSG ISC)3.4.7.18.
Table 3.4.7.18-1 Configurable ISC properties for LON SPA Device/ModuleDescriptionValue or Value range/ DefaultProperty/ Para-
meter
Basic
Common data class according to IEC61850
ISCCommon DataClass
Addresses
LON base typeUnsigned 16
Signed 16
Unsigned 8
Signed 8
Signed 32
Float IEE754
Structure
Default: Signed 32
LON base type
Network variable selector-1...16384
Default: -1
Selector
SPA channel number for command0...999
Default: 0
SPA CommandChannel Number
SPA data category for commandInput data
Output data
Setting
Variable
Memory data
Slave status
Default: Input data
SPA CommandData Category
SPA data number for command0...999
Default: 0
SPA CommandData Number
Scale and Unit
Scale to be used with this data objectDefault: NoneScale
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Configuring data objects for LON SPA Device/ Module controllableanalogue information
LON OPC Server supports one data object that provides controllable analogue informationfor LON SPA Device/ Module: Analogue set point (APC).
Analogue set point (LSG APC)3.4.7.19.
Table 3.4.7.19-1 Configurable APC properties for LON SPA Device/ModuleDescriptionValue or Value range/ DefaultProperty/ Para-
meter
Basic
Common data class according to IEC61850
APCCommon DataClass
Addresses
SPA channel number for command0...999
Default: 0
SPA CommandChannel Number
SPA data category for commandInput Data
Output Data
Setting
Variable
Memory Data
Slave Status
Default: Input Data
SPA CommandData Category
SPA data number for command0...999
Default: 0
SPA CommandData Number
Scale and Unit
Scale to be used with this data objectDefault: NoneScale
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Configuring data objects for Star Coupler and Clock Master(LMK)
3.4.8.
Single point status for Star Coupler and Clock Master (SPS)3.4.8.1.
Table 3.4.8.1-1 Configurable SPS properties for Star Coupler and Clock MasterDescriptionValue or Value range/ DefaultProperty/ Para-
meter
Basic
Common data class according to IEC61850
SPSCommon DataClass
Addresses
Selector value, value -1 means that thisselector is not used
-1...65535
Default: -1
Selector
Bitmask as integer (decimal) for selectingthe active state of data object
0...65535
Default: 0
Bitmask
Integer status for Star Coupler and Clock Master (INS)3.4.8.2.
Table 3.4.8.2-1 Configurable INS properties for Star Coupler and Clock MasterDescriptionValue or Value range/ DefaultProperty/ Para-
meter
Basic
Common data class according to IEC61850
INSCommon DataClass
Addresses
LON base typeUnsigned 16
Signed 16
Unsigned 8
Signed 8
Signed 32
Float IEE754
Structure
Default: Signed 32
LON Base Type
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DescriptionValue or Value range/ DefaultProperty/ Para-meter
Selector value, value -1 means that thisselector is not used
-1...65535
Default: -1
Selector
SNVT Type-32768...65535
Default: 5
SNVT Type
Scale and Unit
Scale to be used with this data objectNone
Device Connection StatusClass
Default: None
Scale
Logical Node name plate for Star Coupler and Clock Master(LPL)
3.4.8.3.
Table 3.4.8.3-1 Configurable LPL properties for Star Coupler and Clock MasterDescriptionValue or Value range/ DefaultProperty/ Para-
meter
Basic
Common data class according to IEC61850
LPLCommon DataClass
Vendor
Simple text string describing the vendorDefault: ABBVendor
Software Revision
Simple text string describing the softwarerevision
Default: NoneSoftware Revision
Description
Simple text string describing descriptionfor logical node
Default: NoneDescription
Event definitions3.4.9.
For information on event definitions, refer to COM600 User’s Manual.
Using scales3.4.10.
For information on using scales, refer to COM600 User’s Manual.
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Operation4.
About this section4.1.
This section describes the basic operation procedures you can carry out after the LONOPC Server has been configured.
After this, you can, for example, monitor and control the condition of connections in aLON network. This is done by using the Online diagnostics function in SAB600.
Activating COM600 with new configurations4.2.
For information about activating COM600 with new configuration, see COM600 User’sManual.
LON OPC Server diagnostics4.3.
To view the LON OPC Server diagnostics, right-click the LON OPC Server object andselect Online diagnostics , see Figure 4.3-1 .
LON_OPC_Server_Online_diagnostics.jpg
Figure 4.3-1 LON OPC Server Online diagnostics
You have the following alternatives:• to view version information• to reset the LON OPC Server• to view the event log file , see Figure 4.3-2• to clear the log file
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Eventlog_LL.jpg
Figure 4.3-2 Event log file
Diagnostic AE Client
Diagnostic events can be monitored and controlled using the Diagnostic AE Clientfunction, see Figure 4.3-3 . Click Refresh to update the status information. To be ableto receive events from a certain device, diagnostic events must be enabled for thisrespective device.
To enable diagnostic events:1. Right-click the device.2. Select Online diagnostics.3. Mark the Diagnostic events enabled check box. See Figure 4.3-3 for example.
LON_OPC_Server_Diagnostic_AE_client.jpg
Figure 4.3-3 LON OPC Server Diagnostic AE client
Monitoring and controlling LON Channel Activity4.4.
The LON Channel activity can be monitored with the Online diagnostics function.
You can also take a channel into use or out of use as described in this section.
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To monitor and control LON Channel activity:1. Select the channel you want to monitor in the object tree of SAB600.2. Right-click the channel.3. Select Online diagnostics.
In the Diagnostic counters field, you can monitor the channel activity. To reset Diagnosticcounters, click Reset counters.
You can take a LON Channel into use by marking the In use check box. If you unmarkthe check box, the channel is taken out of use. Diagnostic counters are updated every 2seconds. To update them manually, click Refresh.
Monitoring and controlling LON Device communication4.5.
The LON Device communication can be monitored with the Online diagnostics function.You can also take a device or module into use or out of use as described in this section.
To monitor and control LON Device communication:1. Select the device/ module you want to monitor in the object tree of SAB600.2. Right-click the device.3. Select Online diagnostics.
In the Status information field, you can monitor the device status.
The Diagnostic counters field provides information on device activity. To reset diagnosticcounters, click Reset counters.
The Address information field shows the values for the subnet number, node number,and SPA unit number as shown in Figure 4.5-1 .
You can take a LON device into use by marking the In use check box. If you unmarkthe check box, the device is taken out of use.
Diagnostic counters are updated every 2 seconds. To update them manually, click Refresh.
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LON_Device_Online_diagnostics.jpg
Figure 4.5-1 LON Device Online diagnostics
Transferring Transparent SPA data
You can read and write SPA parameters of the LON devices. To do this, enter a Trans-parent SPA message in the text field of the Online diagnostics function, see Figure 4.5-1. Click Send to send the Transparent SPA message to the LON device. The answer fromthe LON device is shown in the Reply field.
Monitoring LSG Device status information4.6.
Status information for the LSG Device can be monitored with the Online diagnosticsfunction.
To monitor LSG Device status information:1. Select the LSG device you want to monitor in the object tree of SAB600.2. Right-click the device.3. Select Online diagnostics.
In the Status information field, you can view the LSG Device status information, seeFigure 4.6-1.
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LSG_Online_diagnostics.jpg
Figure 4.6-1 Monitoring LSG Device status information
Monitoring LON SPA Device and LON SPA Modulestatus information
4.7.
Status information for the LON SPA Device and LON SPA Module can be monitoredwith the Online diagnostics function.
To monitor LON SPA Device and LON SPA Module status information:1. Select the LON SPA Device or LON SPA Module you want to monitor in the object
tree of SAB600.2. Right-click the device.3. Select Online diagnostics.
In the Status information field, you can view the LON SPA Device or LON SPA Modulestatus information, see Figure 4.7-1
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LON_SPA_Module_Online_diagnostics.jpg
Figure 4.7-1 Monitoring LON SPA Module status information
Monitoring Clock Master status information4.8.
Status information for the LON Clock Master can be monitored with the Online dia-gnostics function.
To monitor Clock Master status information:1. Select the Clock Master device you want to monitor in the object tree of SAB600.2. Right-click the device.3. Select Online diagnostics. In the Status information field, you can now view the
clock status information, see Figure 4.8-1.
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LON_Clock_Master_Online_diagnostics.jpg
Figure 4.8-1 Monitoring Clock Master status information
The Diagnostic counters field provides information on device activity. To reset diagnosticcounters, click Reset counters.
Diagnostic counters are updated every 2 seconds. To update them manually, click Refresh.
Monitoring Star Coupler status information4.9.
Status information for the LON Star Coupler can be monitored with the Online diagnosticsfunction.
To monitor Star Coupler status information:1. Select the Star Coupler device you want to monitor in the object tree of SAB600.2. Right-click the device.3. Select Online diagnostics. In the Status information field, you can now view the
star coupler status information, see Figure 4.9-1.
The Diagnostic counters field provides information on device activity. To reset diagnosticcounters, click Reset counters.
Diagnostic counters are updated every 2 seconds. To update them manually, click Refresh.
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LON_Star_Coupler_Online_diagnostics.jpg
Figure 4.9-1 Monitoring Star Coupler status information
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Technical reference5.
About this section5.1.
This section provides reference information about the following issues:• IEC 61850 data modeling• Attributes• Status codes
IEC 61850 data modeling5.2.
General about IEC 61850 data modeling5.2.1.
The relationship between the IEC 61850 data modeling and LON OPC Server is describedin this section.
For each data class, there is a table giving a detailed description about the relation betweenthe LON data and IEC 61850 data object attributes and services. The tables also describehow the data is presented on the OPC Server name space.
The columns in the tables have the following content types:• Name specifies the OPC item name of the attribute/service.• Type specifies the IEC 61850 type of the attribute.• Value/ Value range specifies the allowed values and ranges of the attribute/service.• Mandatory/Optional specifies whether the attribute is considered as mandatory or
optional according to the IEC 61850 standard.• LON information element specifies the LON information element related to the
attribute/service.• OPC data types specify the OPC data type used for the OPC item.
LON information element information is valid only when thesliding window protocol (= LON LAG) is used. Otherwisethe data objects are updated as stated below:
Non-analogue LSG data objects are updated through SPAevents. They include the following data objects: LSG DPS,LSG ACT, LSG ACD, LSG DPL, LSG LPL, LSG SPC, LSGDPC, and LSG APC.
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Analogue LSG data objects and LMK data objects are updatedthrough network variables. They include the following dataobjects: LSG INS, LSG BCR, LSG MV, LSG CMV, LSGWYE, LSG DEL, LSG INC, LSG BSC, LSG ISC, LMK SPS,and LMK INS.
Data objects for status information5.2.2.
Single point status (SPS)5.2.2.1.
Single indication (DMCD M_SP_N, M_SP_T) information from LON is represented asSPS.
Table 5.2.2.1-1 Single point status (SPS) informationOPC data typesProtocol informa-
tion elementMandatory/Optional
Value/ Valuerange
TypeName
VT_BOOLSPIMTRUE | FALSEBOOLEANstVal
VT_I4IV, NT, SB, BLMQualityq
VT_DATECPTMTimeStampt
VT_BSTROTextDescriptiond
Double point status (DPS)5.2.2.2.
Double indication (DMCD M_DP_N, M_DP_T, M_DP_NR, M_DP_TR) informationfrom LON is represented as DPS.
Table 5.2.2.2-1 Double point status (DPS) informationOPC data typesProtocol informa-
tion elementMandatory/Optional
Value/ Valuerange
TypeName
VT_I4DPIMIntermediate-state(0)
off(1)
on(2)
bad-state(3)
CPTstVal
VT_I4IV, NT, SB, BLMQualityq
VT_DATECPTMTimeStampt
VT_BSTRSeparate signalOTextDescriptiond
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Integer status (INS)5.2.2.3.
Measured value (DMCD M_ MEN_N, M_MEN_T) information from LON is representedas INS.
Table 5.2.2.3-1 Integer status (INS) informationOPC data typesProtocol informa-
tion elementMandat-ory/Optional
Value/ Valuerange
TypeName
VT_I4VAIMINTEGERstVal
VT_I4IV, NT, SB, BL, OVMQualityq
VT_DATECPTMTimeStampt
VT_BSTRSeparate signalOTextDescriptiond
INS can be updated both through network variables and thesliding window protocol. INS can also be updated throughnetwork variables when LMK (and not LSG) is used.
Protection activation information (ACT)5.2.2.4.
Single indication and measured value (DMCD M_SP_N, M_SP_T, M_MEN_N,M_MEN_T) information from LON can be represented as ACT.
Table 5.2.2.4-1 Proptection activation information (ACT)OPC data typesProtocol informa-
tion elementMandat-ory/Optional
Value/ Valuerange
TypeName
VT_BOOLSVAF, VAI, or SPIMBOOLEANgeneral
VT_BOOLSVAF, VAI, or SPIOBOOLEANphsA
VT_BOOLSVAF, VAI, or SPIOBOOLEANphsB
VT_BOOLSVAF, VAI, or SPIOBOOLEANphsC
VT_BOOLSVAF, VAI, or SPIOBOOLEANneut
VT_I4MQualityq
VT_DATECPTMTimeStampt
VT_BSTRSeparate signalOTextDescriptiond
Directional protection activation information (ACD)5.2.2.5.
Single indication and measured value (DMCD M_SP_N, M_SP_T, M_MEN_N,M_MEN_T) information from LON can be represented as ACD.
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Table 5.2.2.5-1 Directional protection activation information (ACD)OPC data typesProtocol informa-
tion elementMandat-ory/Optional
Value/ Valuerange
TypeName
VT_BOOLSVAF, VAI, or SPIMBOOLEANgeneral
VT_I4Separate signalMunknown | forward| backward
ENUMERATEDdirGeneral
VT_BOOLSVAF, VAI, or SPIOBOOLEANphsA
VT_I4-Ounknown | forward| backward
ENUMERATEDdirPhsA
VT_BOOLSVAF, VAI, or SPIOBOOLEANphsB
VT_I4-Ounknown | forward| backward
ENUMERATEDdirPhsB
VT_BOOLSVAF, VAI, or SPIOBOOLEANphsC
VT_I4-Ounknown | forward| backward
ENUMERATEDdirPhsC
VT_BOOLSVAF, VAI, or SPIOBOOLEANneut
VT_I4-Ounknown | forward| backward
ENUMERATEDdirNeut
VT_I4IV, NT, SB, BL, OVMQualityq
VT_DATECPTMTimeStampt
VT_BSTRSeparate signalOTextDescriptiond
Binary counter reading (BCR)5.2.2.6.
Pulse counter (DMCD M_PC_T) information from LON can be presented as BCR.
Table 5.2.2.6-1 Binary counter reading (BCR) informationOPC data typesProtocol informa-
tion elementMandat-ory/Optional
Value/ Valuerange
TypeName
VT_I4BCRMINTEGERactVal
See UnitConfigOUnitunits
VT_I4IV, NT, SB, BL, OV,CA, CY
MQualityq
VT_DATECPTMTimeStampt
VT_BSTRSeparate signalOTextDescriptiond
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Device name plate (DPL)5.2.2.7.
Table 5.2.2.7-1 Device name plate (DPL) informationOPC data typesProtocol informa-
tion elementMandat-ory/Optional
Value/ Valuerange
TypeName
VT_BSTRSeparate signalMVisibleStringvendor
VT_BSTRSeparate signalOVisibleStringhwRev
VT_BSTRSeparate signalOVisibleStringswRev
VT_BSTRSeparate signalOVisibleStringserNum
VT_BSTRSeparate signalOVisibleStringlocation
Logical node name plate (LPL)5.2.2.8.
Table 5.2.2.8-1 Logical node name plate (LPL) informationOPC data typesProtocol informa-
tion elementMandat-ory/Optional
Value/ Valuerange
TypeName
VT_BSTRSeparate signalMVisibleStringvendor
VT_BSTRSeparate signalMVisibleStringswRev
VT_BSTRSeparate signalMVisibleStringd
LPL can be updated both through network variables and thesliding window protocol. LPL can also be updated throughnetwork variables when LMK (and not LSG) is used.
Data objects for measurand information5.2.3.
Measured value (MV)5.2.3.1.
Measured value (DMCD M_MEF_N, M_MEF_T, M_MEN_N, M_MEN_T) informationfrom LON can be presented as MV. With LSG, measured value information is updatedthrough a network variable.
Table 5.2.3.1-1 Measured value (MV) informationOPC data typesProtocol informa-
tion elementMandat-ory/Optional
Value/Value rangeTypeName
VT_R4SVAF, VAIMAnalogueValuemag
VT_I4L1, L2, L3, L4, orSeparate signal
ORangerange
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OPC data typesProtocol informa-tion element
Mandat-ory/Optional
Value/Value rangeTypeName
VT_I4IV, NT, SB, BL, OV,OR
MQualityq
VT_DATECPTMTimeStampt
See RangeConfigORangeConfigrangeC
See UnitConfigOUnitunits
VT_BSTRConfigOTextDescriptiond
Complex measured value (CMV)5.2.3.2.
Complex measured value (DMCD M_MEF_N, M_MEF_T, M_MEN_N, M_MEN_T)information from LON can be represented as CMV. With LSG, complex measured valueinformation is updated through a network variable.
Table 5.2.3.2-1 Complex measured value (CMV) informationOPC data typesProtocol informa-
tion elementMandat-ory/Optional
Value/ Valuerange
TypeName
VT_R4SVAF, VAIMAnalogueValuecVal.mag
VT_I4L1, L2, L3, L4, orSeparate signal
ORangerange
VT_I4IV, NT, SB, BL, OV,OR
MQualityq
VT_DATECPTMTimeStampt
See RangeConfigConfigORangeConfigrangeC
See UnitConfigOUnitunits
VT_BSTRConfigOTextDescriptiond
WYE5.2.3.3.
Measured value (DMCD M_MEF_N, M_MEF_T, M_MEN_N, M_MEN_T) informationfrom LON can be represented as WYE. With LSG, WYE information is updated througha network variable.
Table 5.2.3.3-1 WYE informationOPC data typesProtocol informa-
tion elementMandat-ory/Optional
Value/ Valuerange
TypeName
See CMVSee CMVMCMVphsA
See CMVSee CMVOCMVphsB
See CMVSee CMVOCMVphsC
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OPC data typesProtocol informa-tion element
Mandat-ory/Optional
Value/ Valuerange
TypeName
See CMVSee CMVOCMVneut
VT_BSTRSeparate signalODescriptiond
Delta (DEL)5.2.3.4.
Measured value (DMCD M_MEF_N, M_MEF_T, M_MEN_N, M_MEN_T) informationfrom LON can be represented as DEL. With LSG, DEL information is updated througha network variable.
Table 5.2.3.4-1 Delta (DEL) informationOPC data typesProtocol informa-
tion elementMandat-ory/Optional
Value/ Valuerange
TypeName
See CMVSee CMVMCMVphsAB
See CMVSee CMVMCMVphsBC
See CMVSee CMVMCMVphsCA
VT_BSTRSeparate signalOTextDescriptiond
Data objects for controllable status information5.2.4.
Controllable single point (SPC)5.2.4.1.
Single point indication and command (DMCD C_SC_N, M_SP_N, M_SP_T) informationfrom LON is represented as SPC.
Table 5.2.4.1-1 Controllable single point (SPC) informationOPC data typesLON information
elementMandat-ory/Optional
Value/ Valuerange
TypeName
VT_BOOLSCOMSPIctlVal
VT_BOOLSPIMFALSE | TRUEstVal
VT_I4IV, NT, SB, BL, OVMQualityq
VT_DATECPTMTimeStampt
VT_BSTRSeparate signalOTextDescriptiond
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Controllable double point (DPC)5.2.4.2.
Table 5.2.4.2-1 Controllable double point (DPC) informationOPC data typesLON information
elementMandat-ory/Optional
Value/ Valuerange
TypeName
VT_I4SCOOcontrol valueSPIctlOperOn
VT_I4SCOOcontrol valuectlOperOff
VT_I4SCOOcontrol valuectlSelOn
VT_I4SCOOcontrol valuectlSelOff
VT_I4DPIMintermediate-state(0) off (1) on (2)bad-state (3)
CPTstVal
VT_I4IV, NT, SB, BL, OVMQualityq
VT_DATECPTMTimeStampt
VT_BOOLSCOOFALSE | TRUEBOOLEANctlCan
VT_BOOLSPIOFALSE | TRUEBOOLEANstSeld
VT_BSTRSeparate signalOTextDescriptiond
VT_BOOLOBOOLEANsubEna
VT_I4OCPTsubVal
VT_I4OQualitysubQ
VT_BSTROStringsubId
Control values for ctlSelOn, ctlSelOff, ctlOperOn, ctlOperOff are the following:
bit1 Normal control
bit2 Interlock override
bit3 Syncrocheck override
For example, to perform a select on operation with interlock override on, write the value3 to the ctlSelOn item.
Controllable integer status (INC)5.2.4.3.
Set point command and measured value (DMCD C_SE_NA, M_MEN_N, M_MEN_T)information from LON is represented as INC. With LSG, INC information is updatedthrough a network variable.
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Table 5.2.4.3-1 Controllable integer status (INC) informationOPC data typesLON information
elementMandat-ory/Optional
Value/ Valuerange
TypeName
VT_I4VAI32MINTEGERctlVal
VT_I4VAI32MINTEGERstVal
VT_I4IV, NT, SB, BL, OVMQualityq
VT_DATECPTMTimeStampt
VT_BSTRSeparate signalOTextDescriptiond
Binary controlled step position information (BSC)5.2.4.4.
Bitstring command (DMCD C_RC_N, M_ST_N, M_ST_T) information from LON isrepresented as BSC. With LSG, BSC information is updated through a network variable.
Table 5.2.4.4-1 Binary controlled step position information (BSC)OPC data typesProtocol informa-
tion elementM/OValue/ Value
rangeTypeName
VT_I1RCOMstop (0) | lower (1)| higher (2) |reserved (3)
ENUMERATEDctlVal
VTIMValWithTransvalWTr
VT_I4IV, NT, SB, BL, OVMQualityq
VT_DATECPTMTimeStampt
VT_BSTRSeparate signalOTextDescriptiond
Integer controlled step position information (ISC)5.2.4.5.
Setpoint command (C_SE_NA, M_ST_N, M_ST_T) information from LON is representedas ISC. With LSG, ISC information is updated through a network variable.
Table 5.2.4.5-1 Integer controlled step position information (ISC)OPC data typesLON information
elementMandat-ory/Optional
Value/ Valuerange
TypeName
VT_I4VAI32M-64 ... 63INTEGERctlVal
VTIMValWithTransvalWTr
V_I4IV, NT, SB, BL, OVMQualityq
V_DATECPTMTimeStampt
VT_BSTRSeparate signalOTextDescriptiond
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Data objects for controllable analogue information5.2.5.
Analogue set point (APC)5.2.5.1.
Setpoint command and measured value (DMCD C_SE_NC) information from LON isrepresented as APC.
Table 5.2.5.1-1 Analogue set point (APC) informationOPC datatypes
LON informa-tion element
Mandat-ory/Optional
Value/ Valuerange
TypeName
VT_R4SVAFMAnalogue-Value
spMag
VT_BSTRSeparate sig-nal
OTextDescriptiond
Attributes5.3.
General about attributes5.3.1.
In addition to item tags for process data (indications and commands), the LON OPCServer also provides some item tags for controlling the devices and retrieving statusinformation from them. These item tags are called attributes.
There are several categories of attributes, which are described in the following subsections.
Server attributes5.3.2.
Table 5.3.2-1 Server attributesDescriptionValue or Value range/ DefaultName
Data type: Text
Access: Read-only
Version information of the protocol stack
Value: Version informationProtocol stack ver-sion
The Reset button for resetting the OPCServer
Reset
File version of the executable OPC ServerFile version
Version information of the installed OPCServer
Product version
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LON Channel attributes5.3.3.
Table 5.3.3-1 LON Channel attributesDescriptionValue or Value range/ DefaultName
Data type: Integer
Access: Read-only
Diagnostic counters
Incremented each time a mes-sage is transmitted to the LONchannel by the LON OPCServer.
Transmitted messages
Incremented each time a mes-sage transmission to the LONchannel fails for some reason.
Failed transmissions
Incremented each time atransaction based transmissiondoes not receive a responsewithin a configured timeout.
Timeout errors
Incremented each time a mes-sage is received to the LONOPC Server from the LONchannel.
Received messages
Incremented each time theLON device driver responseswith an error code.
LON Driver Error Response
Incremented each time an erroris detected in a format of amessage received by the LONOPC Server from the LONchannel.
Error in Message Format
Data type: Integer
Access: No limitations
Indicates the detailed informa-tion about the station devicestatus. Writing to the OS attrib-ute (OS = 1) of a device makesthe protocol stack to re-transmitthe last system messagecaused by the device. Possible"Stopped" and "Suspended"messages cause old markingof OPC items. By reading theOS attribute, the status code ofthe system message can beread.
See the Status Codes manualfor detailed information.
1 = Re-transmit system mes-sage
A status code, for example:
0 = OK (communication worksproperly)
13371 = Device suspended
Object status
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DescriptionValue or Value range/ DefaultName
Data type: Integer
Access: No limitations
The state of the line - whetherit is in use or not. When a lineis not in use, no data can betransmitted on it, and no datais received from it. The lineattributes can be read as usual.Generally, a line must be takenout of use by setting this attrib-ute to 0 before the line attrib-utes can be written. When aline is stopped by setting the IUattribute = 0, all data transmis-sion on the line ceases. How-ever, before that, the protocolstack executes to the end allon-going data transactions. Forexample, the polling of the sta-tion in turn is completed.
0 = Not in use, the line commu-nication is stopped
1 = In use
Default: 1
In use
LON Device attributes (LON REX IED)5.3.4.
Table 5.3.4-1 LON Device attributes (LON REX IED)DescriptionValue or Value range/ DefaultName
File transfer
Data type: Text
Access: No limitations
Defines the directory where thereceived files are stored. Thefile receiving will be interruptedif the directory does not existor if it is write protected.
Default: “C:\Temp”Local file directory
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DescriptionValue or Value range/ DefaultName
Data type: Integer
Access: Read
This attribute indicates thestatus of the file receiving. Thisattribute can be read and writ-ten from the communicationmanager using the file transferfeature.
0= Free to start / previoustransmission completed
1= Receiving in progress
2=Receive timeout in protocolstack
3= Receive timeout in relay
4= Invalid directory or filename
5= File not available in relay
6= Service not available,internal error
7=Transfer aborted
8= File writing failed
Status
The number of currentlyreceived bytes of a file.
Received bytes
The number of bytes of a com-plete file to be transferred.
File size in bytes
Data type: Text
Access: No limitations
A string containing a valid file-name, max. 30 characters.
Default: Temp001.txtLocal file name
Data type: Integer
Access: No limitations
Defines the file index in theP&C device.
0...65535
Default: 0
File index in device
Data type: Boolean
Access: No limitations
True:
Starts the file transfer (=receiv-ing the file from the device).
False:
If the transfer is in progress, itis aborted and the file is closed.
Control file reception
Data type: Integer
Access: Read-only
Diagnostic counters
This counter is incrementedeach time a command to thedevice is not responded withina configured time.
Reply timeouts
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DescriptionValue or Value range/ DefaultName
This counter is incrementedeach time a message contain-ing process data is receivedfrom the device.
Received process messages
This counter is incrementedeach time a SPA reply hasbeen ignored by the OPCserver due to communicationdisturbances.
SM reply ignored
Data type: Integer
Access: No limitations
Indicates the detailed informa-tion about the station devicestatus. Writing to the OS attrib-ute (OS = 1) of a device makesthe protocol stack to re-transmitthe last system messagecaused by the device. Possible"Stopped" and "Suspended"messages
cause old marking of OPCitems. By reading the OSattribute, the status code of thesystem message can be read.
See the Status Codes manualfor detailed information.
1 = Re-transmit system mes-sage
A status code, for example:
0 = OK (communication worksproperly)
13371 = Device suspended
Object status
Data type: Integer
Access: No limitations
The operational status of thedevice - in use or out of use.Taking the device out of usewith this attribute stops all datacommunication with the device.All operations that would resultin a data exchange are dis-abled. The device itself is notaffected by the attribute, onlythe protocol stack’s image ofthe device. Setting IU to 1 isallowed only if the deviceaddress is legal.
0 = Out of use
1 = In use
Default: 1
In use
Data type: Boolean
Access: Read-only
Indicates the status of thedevice connection
True = Device connection OK
False = Device connectionsuspended
Device connection status
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DescriptionValue or Value range/ DefaultName
Indicates and controls whetherthe AE diagnostic events willbe generated by this device.
Diagnostic events enabled
Data type: Text
Access: No limitations
Writing and reading SPA mes-sages
Makes it possible to communic-ate with a SPACOM unit bysending any SPA message andreading the reply as text. Nocheck of the
message is performed in theOPC Server or in the protocolstack, that is, even faulty mes-sages are sent to the SPACOMunit.
Value:
The contents of a valid SPAmessage, not including themessage frame (start charac-ter, unit address, checksum,and message trailer).
Transparent SPA
Data type: Integer
Access: No limitations
The LON node number of thestation
1 ... 127Node number
Data type: Integer
Access: No limitations
The LON subnet number of thestation
1 ... 255Subnet number
Data type: Integer
Access: No limitations
Unit number used in transpar-ent SPA messages (both mes-sages resulting from com-mands and messages gener-ated with the SM attribute).
0 ... 65535Unit number
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LON SPA Gateway, LON Clock Master and LON Star Couplerattributes
5.3.5.
Table 5.3.5-1 LON SPA Gateway, LON Clock Master and LON Star Coupler attributesDescriptionValue or Value range/
DefaultName
Data type: Integer
Access: Read-only
Diagnostic counters
This counter is incremented each time acommand to the device is not respondedwithin a configured time.
Reply timeouts
Data type: Integer
Access: No limitations
Indicates the detailed information aboutthe station device status. Writing to theOS attribute (OS = 1) of a device makesthe protocol stack to re-transmit the lastsystem message caused by the device.Possible "Stopped" and "Suspended"messages
cause old marking of OPC items. Byreading the OS attribute, the status codeof the system message can be read.
See the Status Codes manual fordetailed information.
1 = Re-transmit systemmessage
A status code, forexample:
0 = OK (communicationworks properly)
13371 = Device suspen-ded
Object status
Data type: Integer
Access: No limitations
The operational status of the device - inuse or out of use. Taking the device out-of-use with this attribute stops all datacommunication with the device. Alloperations that would result in a dataexchange are disabled. The device itselfis not affected by the attribute, only pro-tocol stack’s image of the device. SettingIU to 1 is allowed only if the deviceaddress is legal.
0 = Out of use
1 = In use
Default: 1
In use
Data type: Boolean
Access: Read-only
Indicates the status of the device connec-tion
True = Device connectionOK
False = Device connectionsuspended
Device connectionstatus
Indicates and controls whether the AEdiagnostic events will be generated bythis device.
Diagnostic eventsenabled
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DescriptionValue or Value range/Default
Name
Data type: Integer
Access: No limitations
The LON node number of the station
1 ... 127Node number
Data type: Integer
Access: No limitations
The LON subnet number of the station
1 ... 127Subnet number
Data type: BSTR
This is equal SCIL #SETSTAn:SLM=(1,2,RTU_BIN(%MSG_IN_HEX))
Value: LON Message inHEX ASCII string
LON Message withtransparent response
Data type: BSTR
This is equal to SCIL #SETSTAn:SLM=(1,3,RTU_BIN(%MSG_IN_HEX))
Value: LON Message inHEX ASCII string
LON Message with NVlevel response
LON SPA Device/ LON SPA Module attributes5.3.6.
Table 5.3.6-1 LON SPA Device/LON SPA Module attributesDescriptionValue or Value range/ DefaultName
Data type: Integer
Access: Read-only
Diagnostic counters
Incremented each time a datapoll reply is received.
Process data messagesreceived
Incremented each time a SPAevent message is received.
Event messages received
This counter is incrementedeach time a device communic-ation status changes from okto suspended.
Suspensions
This counter is incrementedeach time a command to thedevice is not responded withina configured time.
Reply timeouts
This counter is incrementedeach time a data discrepancyis detected between the valuereceived with the event and theconsistency check data poll.
Event to data discrepancies
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DescriptionValue or Value range/ DefaultName
Data type: Integer
Access: No limitations
Indicates the detailed informa-tion about the station devicestatus. Writing to the OS attrib-ute (OS = 1) of a device makesthe protocol stack to re-transmitthe last system messagecaused by the device. Possible"Stopped" and "Suspended"messages cause old markingof OPC items. By reading theOS attribute, the status code ofthe system message can beread.
See the Status Codes manualfor detailed information.
1 = Re-transmit system mes-sage
A status code, for example:
0 = OK (communication worksproperly)
13371 = Device suspended
Object status
Data type: Integer
Access: No limitations
The state of the line - whetherit is in use or not. When a lineis not in use, no data can betransmitted on it, and no datais received from it. The lineattributes can be read as usual.Generally, a line must be takenout of use by setting this attrib-ute to 0 before the line attrib-utes can be written. When aline is stopped by setting the IUattribute = 0, all data transmis-sion on the line ceases. How-ever, before that, the protocolstack executes to the end allon-going data transactions. Forexample, the polling of the sta-tion in turn is completed.
0 = Not in use, the line commu-nication is stopped
1 = In use
Default: 1
In use
Data type: Boolean
Access: Read-only
Indicates the status of thedevice connection
True = Device connection OK
False = Device connectionsuspended
Device connection status
Indicates and controls whetherthe AE diagnostic events willbe generated by this device.
Diagnostic events enabled
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DescriptionValue or Value range/ DefaultName
Data type: Text
Access: No limitations
Writing and reading SPA mes-sages
Makes it possible to communic-ate with a SPACOM unit bysending any SPA message andreading the reply as text. Nocheck of the message is per-formed in the OPC Server or inthe protocol stack, that is, evenfaulty messages are sent to theSPACOM unit.
Value:
The contents of a valid SPAmessage, not including themessage frame (start charac-ter, unit address, checksum,and message trailer).
Transparent SPA
Status codes5.3.7.
Device OK0
SPA no acknowledge response13222
SPA no acknowledge reply13226
Device taken out of use13272
Device taken into use13273
Device out of use13274
Timeout while waiting response13276
Device connecting13277
Device disconnecting request received13278
Device connection accepted13279
Device rejects event session13280
Device event session setup timeout13281
LON no acknowledge response13326
LON no acknowledge reply13330
No transparent SPA reply available13331
Illegal IEC event received13337
General interrogation started13338
General interrogation finished13339
Command syntax failure13340
Session no acknowledge counter limit exceeded13355
LON driver cannot be opened17550
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Index
Aadding
Channel object ............................................................................................... 20Data object ..................................................................................................... 21Gateway object ............................................................................................... 19Logical device ................................................................................................ 20Logical node ................................................................................................... 21LON Clock Master .......................................................................................... 20LON Device .................................................................................................... 20LON SPA Device ............................................................................................ 20LON Star Coupler ........................................................................................... 20LSG Device .................................................................................................... 20OPC Server object .......................................................................................... 19
Analogue set point (APC)IEC 61850 data modeling .............................................................................. 105properties ....................................................................................................... 52
Analogue set point (LSG APC)properties ....................................................................................................... 85
attributesLON Channel ............................................................................................... 106LON Clock Master ......................................................................................... 111LON Device .................................................................................................. 107LON SPA Device ........................................................................................... 112LON SPA Gateway ........................................................................................ 111LON SPA Module .......................................................................................... 112LON Star Coupler .......................................................................................... 111server .......................................................................................................... 105
BBinary controlled step position information (BSC)
IEC 61850 data modeling .............................................................................. 104properties ....................................................................................................... 49
Binary controlled step position information (LSG BSC)properties ....................................................................................................... 81
Binary counter reading (BCR)IEC 61850 data modeling ................................................................................ 99properties ....................................................................................................... 36
Binary counter reading (LSG BCR)properties ....................................................................................................... 62
Cchannel
diagnostics ..................................................................................................... 89
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Channel objectadding ........................................................................................................... 20
Clock MasterInteger status (INS) ......................................................................................... 86Logical node name plate (LPL) ........................................................................ 87monitoring status information ........................................................................... 93Single point status (SPS) ................................................................................ 86
Complex measured value (CMV)IEC 61850 data modeling .............................................................................. 101properties ....................................................................................................... 39
Complex measured value (LSG CMV)properties ....................................................................................................... 66
configuringobject ............................................................................................................. 21
Controllable double point (DPC)IEC 61850 data modeling .............................................................................. 103properties ....................................................................................................... 43
Controllable double point (LSG DPC)properties ....................................................................................................... 71
Controllable integer status (INC)IEC 61850 data modeling .............................................................................. 103properties ....................................................................................................... 48
Controllable integer status (LSG INC)properties ....................................................................................................... 80
Controllable single point (SPC)IEC 61850 data modeling .............................................................................. 102properties ................................................................................................. 32, 41
DData object
adding ........................................................................................................... 21Delta (DEL)
IEC 61850 data modeling .............................................................................. 102properties ....................................................................................................... 40
Delta (LSG DEL)properties ....................................................................................................... 67
device communicationmonitoring and controlling ............................................................................... 90
Device name plate (DPL)IEC 61850 data modeling .............................................................................. 100properties ....................................................................................................... 37
Device name plate (LSG DPL)properties ....................................................................................................... 63
diagnosticschannel .......................................................................................................... 89server ............................................................................................................ 88
Directional protection activation information (ACD)IEC 61850 data modeling ................................................................................ 98properties ....................................................................................................... 35
Directional protection activation information (LSG ACD)
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properties ....................................................................................................... 59Double point status (DPS)
IEC 61850 data modeling ................................................................................ 97properties ....................................................................................................... 33
Double point status (LSG DPS)properties ....................................................................................................... 54
GGateway object
adding ........................................................................................................... 19
IIEC 61850 data modeling
Analogue set point (APC) .............................................................................. 105Binary controlled step position information (BSC) ............................................ 104Binary counter reading (BCR) .......................................................................... 99Complex measured value (CMV) ................................................................... 101Controllable double point (DPC) ..................................................................... 103Controllable integer status (INC) .................................................................... 103Controllable single point (SPC) ...................................................................... 102Delta (DEL) .................................................................................................. 102Device name plate (DPL) .............................................................................. 100Directional protection activation information (ACD) ............................................ 98Double point status (DPS) ............................................................................... 97Integer controlled step position information (ISC) ............................................ 104Integer status (INS) ......................................................................................... 98Logical node name plate (LPL) ...................................................................... 100Measured value (MV) .................................................................................... 100Protection activation information (ACT) ............................................................ 98Single point status (SPS) ................................................................................ 97WYE ............................................................................................................ 101
Integer controlled step position information (ISC)IEC 61850 data modeling .............................................................................. 104properties ....................................................................................................... 51
Integer controlled step position information (LSG ISC)properties ....................................................................................................... 84
Integer status (INS)Clock Master .................................................................................................. 86properties ................................................................................................. 30, 33Star Coupler ................................................................................................... 86
LLogical device
adding ........................................................................................................... 20Logical Device
properties ....................................................................................................... 29Logical node
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adding ........................................................................................................... 21properties ....................................................................................................... 29
Logical node name plate (LPL)Clock Master .................................................................................................. 87IEC 61850 data modeling .............................................................................. 100properties ....................................................................................................... 38Star Coupler ................................................................................................... 87
Logical node name plate (LSG LPL)properties ....................................................................................................... 64
LON Channelattributes ...................................................................................................... 106properties ....................................................................................................... 23
LON Clock Masteradding ........................................................................................................... 20attributes ...................................................................................................... 111properties ....................................................................................................... 26
LON Deviceadding ........................................................................................................... 20attributes ...................................................................................................... 107properties ....................................................................................................... 24
LON SPA Deviceadding ........................................................................................................... 20attributes ...................................................................................................... 112monitoring status information ........................................................................... 92properties ....................................................................................................... 28
LON SPA Gatewayattributes ...................................................................................................... 111
LON SPA Moduleattributes ...................................................................................................... 112monitoring status information ........................................................................... 92properties ....................................................................................................... 28
LON SPA Rack objectadding ........................................................................................................... 20
LON Star Coupleradding ........................................................................................................... 20attributes ...................................................................................................... 111properties ....................................................................................................... 26
LSG Deviceadding ........................................................................................................... 20monitoring status information ........................................................................... 91properties ....................................................................................................... 27
MMeasured value (LSG MV)
properties ....................................................................................................... 65Measured value (MV)
IEC 61850 data modeling .............................................................................. 100properties ....................................................................................................... 39
monitoring status informationClock Master .................................................................................................. 93
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LON SPA Device ............................................................................................ 92LON SPA Module ........................................................................................... 92LSG Device .................................................................................................... 91Star Coupler ................................................................................................... 94
Oobject
configuring ..................................................................................................... 21object tree
building .......................................................................................................... 18OPC Server
features ......................................................................................................... 14properties ....................................................................................................... 23
OPC Server objectadding ........................................................................................................... 19
Pproperties
Analogue set point (APC) ................................................................................ 52Analogue set point (LSG APC) ........................................................................ 85Binary controlled step position information (BSC) .............................................. 49Binary controlled step position information (LSG BSC) ...................................... 81Binary counter reading (BCR) .......................................................................... 36Binary counter reading (LSG BCR) .................................................................. 62Complex measured value (CMV) ..................................................................... 39Complex measured value (LSG CMV) .............................................................. 66Controllable double point (DPC) ...................................................................... 43Controllable double point (LSG DPC) ............................................................... 71Controllable integer status (INC) ...................................................................... 48Controllable integer status (LSG INC) .............................................................. 80Controllable single point (SPC) .................................................................. 32, 41Delta (DEL) .................................................................................................... 40Delta (LSG DEL) ............................................................................................. 67Device name plate (DPL) ................................................................................ 37Device name plate (LSG DPL) ......................................................................... 63Directional protection activation information (ACD) ............................................ 35Directional protection activation information (LSG ACD) .................................... 59Double point status (DPS) ............................................................................... 33Double point status (LSG DPS) ....................................................................... 54Integer controlled step position information (ISC) .............................................. 51Integer controlled step position information (LSG ISC) ...................................... 84Integer status (INS) ................................................................................... 30, 33Logical Device ................................................................................................ 29Logical Node .................................................................................................. 29Logical node name plate (LPL) ........................................................................ 38Logical node name plate (LSG LPL) ................................................................. 64LON Channel ................................................................................................. 23LON Clock Master .......................................................................................... 26LON Device .................................................................................................... 24
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LON SPA Device ............................................................................................ 28LON SPA Module ........................................................................................... 28LON Star Coupler ........................................................................................... 26LSG Device .................................................................................................... 27Measured value (LSG MV) .............................................................................. 65Measured value (MV) ...................................................................................... 39OPC Server .................................................................................................... 23protection activation information (ACT) ............................................................. 34Protection activation information (LSG ACT) ..................................................... 56Single point status (LSG SPS) ......................................................................... 53Single point status (SPS) ........................................................................... 31, 33WYE .............................................................................................................. 39WYE (LSG WYE) ............................................................................................ 66
Protection activation information (ACT)IEC 61850 data modeling ................................................................................ 98properties ....................................................................................................... 34
Protection activation information (LSG ACT)properties ....................................................................................................... 56
Sserver
attributes ...................................................................................................... 105diagnostics ..................................................................................................... 88
Single point status (LSG SPS)properties ....................................................................................................... 53
Single point status (SPS)Clock Master .................................................................................................. 86IEC 61850 data modeling ................................................................................ 97properties ................................................................................................. 31, 33Star Coupler ................................................................................................... 86
Star CouplerInteger status (INS) ......................................................................................... 86Logical node name plate (LPL) ........................................................................ 87monitoring status information ........................................................................... 94Single point status (SPS) ................................................................................ 86
WWYE
IEC 61850 data modeling .............................................................................. 101properties ....................................................................................................... 39
WYE (LSG WYE)properties ....................................................................................................... 66
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