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Gr id A ut oma ti on C ont ro ll er C OM 60 0 4 .0D NP 3 .0 LA N/ WA N M as te r ( OP C) Us er 'sManual
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Contents:
1 . A b ou t t h is m a nu a l . . .. . . .. . .. . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. 7
1 . 1 . C o p y ri g h t s . . . . . .. . . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . 7
1 . 2. T ra d em a r ks . . . .. . .. . . .. . .. . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . 7
1 . 3. G e n e r al . . .. . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . .. . .. . . .. 7
1 . 4. D oc u me nt c o nv e nt i on s . . . .. . .. . . .. . .. . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . .. . .. . . .. . .. . 8
1 . 5. U s e o f s y mb o ls . . . .. . .. . . .. . .. . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . .. . .. . . .. . .. . . .. . . 9
1 . 6 . Te r m i no l o g y . . . . . .. . . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . . 9
1 . 7. A b b re v i at i o ns . . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. 1 0
1 . 8. R el a te d d o cu m en t s . . . . .. . . .. . .. . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . .. . .. . . .. . .. . . .. . .. 1 2
1 . 9. D oc u me nt r e vi s io n s .. . .. . . .. . .. . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . .. . .. . . .. . .. 1 2
2 . I n t r o d uc t i o n . . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . 1 3
2 . 1 . F u n ct i o na l o v e rv i e w . . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . 1 3
2 . 2. D NP 3 . 0 O P C S e rv e r f e at u re s . . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . .. . .. . . .. . . 1 3
3 . C o n f i g u r a t i o n . . . . . .. . . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . . .. . . 1 4
3 . 1. A b ou t t h is s ec t io n . . . .. . .. . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . .. . .. . . .. . .. . . .. . .. . 1 4
3 . 2. O v er v ie w o f c o nf i gu r at i on . . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . .. . .. . . .. . .. . . .. . .. . . 1 4
3 . 3. B u il d in g o b je c t t r ee . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . 1 5
3 .3 .1 . G en er al a bo ut b ui ld in g o bj ec t t re e . .. .. .. .. .. .. .. .. .. .. .. .. .. .. .. . 1 5
3 .3 .2 . A dd in g G at ew ay o bj ec t . . .. .. . .. .. .. . .. .. .. . .. .. .. . .. .. . .. .. .. . .. .. .. . .. 1 5
3 .3 .3 . A dd in g D NP O PC S er ve r o bj ec t . .. .. . .. .. .. . .. .. .. . .. .. .. . .. .. . .. . 1 6
3 .3 .4 . A dd in g D NP C ha nn el o bj ec ts . . .. .. .. . .. .. .. . .. .. . .. .. .. . .. .. .. . .. .. 1 63 .3 .5 . A dd in g D NP I ED o bj ec ts . . . .. . .. .. .. . .. .. .. . .. .. .. . .. .. . .. .. .. . .. .. .. . . 1 6
3 .3 .6 . A dd in g L og ic al D ev ic e o bj ec ts . . .. .. .. . .. .. . .. .. .. . .. .. .. . .. .. .. . .. . 1 7
3 .3 .7 . A dd in g L og ic al N o de o bj ec ts .. . .. .. .. . .. .. . .. .. .. . .. .. .. . .. .. .. . .. .. 1 7
3 . 3. 8 . A d di ng d at a o b je c ts . . .. . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . .. . .. 1 7
3 . 4. C on f ig u ri n g o bj e ct s . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . 1 8
3 .4 .1 . G en er al a b ou t c on fi gu ri ng o bj ec ts . .. .. . .. .. . .. .. .. . .. .. .. . .. .. .. . 1 8
3 .4 .2 . C on fi gu ri ng D NP O PC Se rv er pr op er ti es .. .. .. . .. .. . .. .. .. . .. . 1 9
3 .4 .3 . C on fi gu ri ng D NP O PC S er ve r L AN C ha nn el
properties ....................................... ............................... 19
3 .4 .4 . C on fi gu ri ng D NP L AN D ev ic e . . .. .. .. . .. .. .. . .. .. . .. .. .. . .. .. .. . .. .. 2 1
3 .4 .5 . C on fi gu ri ng L og ic al D ev ic e p ro pe rt ie s . . .. .. .. . .. .. . .. .. .. . .. .. . 2 33 .4 .6 . C on fi gu ri ng L og ic al N o de p ro pe rt ie s . . .. .. .. . .. .. .. . .. .. .. . .. .. .. 2 3
3 .4 .7 . C on fi gu ri ng d at a o bj ec ts f or in te rn al OP C d at a . .. .. .. . .. .. 2 4
3 .4 .7 .1 . G en er al a bo ut c on fi gu ri ng d at a o bj ec ts fo r
I n t e rn a l O P C D a t a . . . . . . .. . . . . . . .. . . . . . .. . . . . . .. . . . . . .. . 2 4
3 .4 .7 .2 . I nt eg er st at us ( IN S) . .. .. . .. .. .. . .. .. .. . .. .. .. . .. .. . .. . 2 5
3 .4. 7. 3. Con tr oll ab le s ingl e p oin t ( SP C) for OPC
internal data ....................................... ......... 25
3 .4 .7 .4 . S in gl e p oi nt s ta tu s (S PS ) . .. .. .. .. .. .. .. .. .. .. .. .. .. 2 6
3 . 4. 8 . C o nf i gu r in g d a ta o bj e ct s . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . .. 2 6
3 .4. 8. 1. G ene ra l abo ut co nf igur ing d at a ob je ct s .. .. .. 26
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3 .4 .8 .2 . D ir ec ti on al p ro te ct io n a ct iv at io n i nf or ma ti on
(ACD) ................................... ....................... 26
3 .4 .8 .3 . P ro te ct io n a ct iv at io n i nf or ma ti on ( AC T) . .. .. . 2 8
3 .4 .8 .4 . A na lo g s et p oi nt ( AP C) . .. .. .. .. .. .. .. .. .. .. .. .. .. .. .. 2 93 .4 .8 .5 . B in ar y c ou nt er r ea di ng ( BC R) . .. .. .. .. .. .. .. .. .. . 3 0
3 .4 .8 .6 . B in ar y c on tr ol le d s te p p os it io n i nf or ma ti on
(BSC) ....................................... ................... 30
3 .4 .8 .7 . C om pl ex m ea su re d v al ue ( CM V) . .. .. .. .. .. .. .. 3 1
3 .4 .8 .8 . D el ta ( DE L) . . .. .. .. .. . .. .. . .. .. .. . .. .. .. . .. .. .. . .. .. . .. .. .. . 3 2
3 .4 .8 .9 . C on tr ol la bl e d ou bl e p oi nt ( DP C) . .. .. .. .. .. .. .. .. 3 3
3 .4 .8 .1 0. D ev ic e N am e P la te ( DP L) . .. .. .. .. .. .. .. .. .. .. .. .. . 3 5
3 .4 .8 .11 . D ou bl e p oi nt s ta tu s (D PS ) .. .. . .. .. . .. .. .. . .. .. .. . .. 3 5
3 .4 .8 .1 2. C on tr ol la bl e i nt eg er s ta tu s ( I NC ) . .. .. . .. .. . .. .. . 3 7
3 . 4. 8 .1 3 . I n te g er s t a tu s ( I NS ) . . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . . 3 7
3 .4 .8 .1 4. I nt eg er c on tr ol le d s te p p os it io n i nf or ma ti on( I S C ) . . . . . . .. . . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . 3 8
3 .4 .8 .1 5. L og ic al N od e N am e P la te ( LP L) . .. .. .. .. .. .. .. .. 3 9
3 .4 .8 .1 6. M ea su re d v al ue ( MV ) .. .. .. .. . .. .. . .. .. .. . .. .. .. . .. .. . 3 9
3 .4 .8 .1 7. C on tr ol la bl e s in gl e p oi nt ( SP C) . .. .. .. .. .. .. .. .. . 4 0
3 .4 .8 .1 8. S in gl e p oi nt s ta tu s (S PS ) . .. . .. .. .. . .. .. .. . .. .. .. . .. 4 2
3 . 4. 8 .1 9 . W Y E . . . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . .. . .. . . .. . .. . . .. . .. . . .. 4 3
3 . 4. 9 . E v en t d e fi n it i on s . . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . 4 6
3 . 4. 1 0. U s in g s c al e s . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . .. . .. . . .. . .. . . .. . .. . . 4 6
3 . 5 . To p i c G e n er a t or . . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . . .. . . . . . .. . . . 4 6
4 . O p e r at i o n . . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . 5 1
4 . 1. A b ou t t h is s ec t io n . . .. . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . 5 1
4 .2 . A ct iv at in g C OM 60 0 w it h n ew c o nf ig ur at io ns . .. .. . .. .. .. . .. .. .. . .. .. .. . .. .. 5 1
4 . 3 . S e r v er d i a gn o s ti c s . . . . . . .. . . . . . .. . . . . . .. . . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . . 5 1
4 . 4. D N P c h an n el d i ag n os t ic s . . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . .. . .. . . .. . .. . . .. . .. 5 2
4 .5 . M on it or in g a nd c on tr ol li ng c om mu ni ca ti on . . .. .. .. . .. .. .. . .. .. . .. .. .. . .. .. .. 5 2
5 . Te c hn i ca l r e fe r en c e . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. 5 3
5 . 1. A b ou t t h is s ec t io n . . .. . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . 5 3
5 . 2. I E C 6 1 85 0 d a ta m o de l in g . . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . 5 3
5 .2 .1 . G en er al a bo ut I EC 6 18 50 d at a m od el in g . .. .. .. .. .. .. .. .. .. .. . 5 3
5 .2 .2 . S in gl e p oi nt s ta tu s ( S P S) . . . .. .. . .. .. .. . .. .. .. . .. .. .. . .. .. . .. .. .. . .. .. . 5 35 .2 .3 . D ou bl e p oi nt s ta tu s ( DP S) . .. .. .. . .. .. .. . .. .. . .. .. .. . .. .. .. . .. .. .. . .. . 5 4
5 . 2. 4 . I n te ge r s ta t us ( I NS ) .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . .. . .. . . .. . .. . . .. 5 4
5 .2 .5 . P ro te ct io n a ct iv at io n i nf or ma ti on ( AC T) . .. . .. .. . .. .. .. . .. .. .. . . 5 4
5 .2 .6 . D ir ec ti on al p ro te ct io n a ct iv at io n i nf or ma ti on ( AC D) . .. .. . 5 5
5 . 2. 7 . B i na r y c o un t er r e ad i ng ( B CR ) . . .. . . .. . .. . . .. . . .. . .. . . .. . .. . . .. . .. . . . 5 5
5 .2 .8 . D ev ic e n am e p la te ( DP L) . . .. .. .. . .. .. .. . .. .. . .. .. .. . .. .. .. . .. .. .. . .. .. 5 6
5 .2 .9 . L og ic al n od e n am e p la te ( LP L) . .. . .. .. .. . .. .. . .. .. .. . .. .. .. . .. .. .. . 5 6
5 . 2. 1 0. M e as u re d v a lu e ( M V) . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. . . .. . .. . . .. . .. . . . 5 6
5 . 2. 11 . C om p le x m e as u re d v a lu e ( C MV ) . . . .. . .. . . .. . .. . . .. . . .. . .. . . .. . .. . 5 7
5 . 2 . 12 . W Y E . . . . . . .. . . . . . .. . . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . . 5 7
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5 . 2 . 13 . D e l ta ( DE L ) . . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . . .. . . . . . .. . . 6 1
5 . 2. 1 4. C o nt r ol l ab l e s i ng l e p oi n t ( S PC ) . . . .. . . .. . .. . . .. . .. . . .. . .. . . .. . .. . . .. 6 2
5 .2 .1 5. C on tr ol la bl e d ou bl e p oi nt ( DP C) . .. .. . .. .. .. . .. .. .. . .. .. .. . .. .. . .. . 6 3
5 . 2. 1 6. C o nt r ol l ab l e i n te ge r s t a t us ( I NC ) . . . . .. . . .. . .. . . .. . . .. . .. . . .. . .. . . .. 6 35 .2 .1 7. B in ar y c on tr ol le d s te p p os it io n i nf or ma ti on ( BS C) . .. . .. .. 6 3
5 .2 .1 8. I nt eg er co nt ro ll ed s te p p os it io n i nf or ma ti on ( IS C) .. .. . .. .. 6 4
5 .2 .1 9. A na lo gu e s et p oi nt ( AP C) . .. .. . .. .. .. . .. .. . .. .. .. . .. .. .. . .. .. .. . .. .. . . 6 4
A p p en d i x 1 . . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . . 6 5
D e v ic e p r o f il e . . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . . .. . . . . 6 5
Index .............................................................................................................. 73
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A bo ut t h i s m an u al1.
Copyrights1.1.
The information in this document is subject to change without notice and should not be
construed as a commitment by ABB Oy. ABB Oy assumes no responsibility for any
errors that may appear in this document.
In no event shall ABB Oy be liable for direct, indirect, special, incidental, or consequential
damages of any nature or kind arising from the use of this document, nor shall ABB Oy
be liable for incidental or consequential damages arising from use of any software or
hardware 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 party
nor used for any unauthorized purpose.
The software or hardware described in this document is furnished under a license and
may 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 respective
holders.
General1.3.
This manual provides thorough information on the DNP 3.0 OPC Server and the central
concepts related to it. You find instructions on how to configure DNP 3.0 OPC Server
related objects. The basic operation procedures are also discussed.
Information in this users manual is intended for application engineers who configure
the OPC Server.
This users manual is divided into following sections:
Introduction
This section gives an overview of the DNP 3.0 OPC Server and its features.
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U se o f s ym bo ls1.5.
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 hazard
which could result in electrical shock.
The warning icon indicates the presence of a hazard which
could result in personal injury.
The caution icon indicates important information or warningrelated to the concept discussed in the text. It may indicate
the presence of a hazard which could result in corruption of
software or damage to equipment or property.
The information icon alerts the reader to relevant facts and
conditions.
The tip icon indicates advice on, for example, how to design
your project or how to use a certain function.
Terminology1.6.
Descr iptionTerm
An abnormal state of a condition.Alarm
An OPC service for providing information about alarms and
e v e n ts t o O P C c l ie n t s .
Alarms and Events; AE
An OPC service for providing information about process data toOPC clients.
D a t a A c c es s ; D A
P a rt o f a l o g ic a l n od e o b je c t r e pr e se n ti n g s p ec i fi c i n fo r ma t io n ,
f o r e x a mp l e , s t a t us , o r me a s u re m e n t. F r o m a n o b j e ct - o r ie n t e dp o in t o f v i ew, a da t a o b je c t i s a n i n st a nc e o f a cl a ss da t a o b je c t.
D Os a r e n o rm a ll y u se d a s tr a ns a ct i on o b je c ts ; t h at i s , t h ey a re
data structures.
D a t a O b j e ct ; D O
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Descr iptionAbbr eviation
U n b u ff e r e d R e p o rt C o n t ro l Bl o c kURCB
e X te n de d M a rk u p L a ng u ag eXML
Related documents1.8.
M R S n u mb e r N am e o f t he m an ua l
1MRS756125C O M6 0 0 U s e r s M a n u a l
Document revisions1.9.
Histor yPr oduct r evisionDocument ver sion/date
D o c um e n t c r e a te d3.2A/17.6.2008
D o c um e n t r e v i se d3.3B/13.2.2009
D o c um e n t r e v i se d3.3C/26.6.2009
D o c um e n t r e v i se d3.4D/06.11.2009
D o c um e n t r e v i se d3.5E/30.6.2011
D o c um e n t r e v i se d4.0F/31.5.2012
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Introduction2.
F u nc t io n al o v er v ie w2.1.
The DNP OPC Server provides methods for OPC clients to exchange data with devices
communicating via the DNP protocol.
Figure2.1-1DNP system overview
(1) NCC (Network Control Center)
(2) COM600 with DNP OPC Server
(3) Station Automation Builder 600 (SAB600)
(4) Protection and control devices communicating through the DNP protocol
D NP 3 .0 O PC Se rv er f ea tu re s2.2.
The DNP LAN/WAN 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
System supervision:
DNP channel communication
DNP device communication
Level of DNP implementation
For more information, see Appendix,Device profile.
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Configuration3.
A b ou t t h is s e ct i on3.1.
This section guides you in the configuration tasks required before you can start using
the DNP OPC Server. For information on the IEC 61850 data modeling, refer to COM600
User's Manual.
Start Station Automation Builder 600 (later referred to as SAB600). Then either open a
project where at least one DNP OPC server is present, or where a new DNP OPC server
will be added. You can also open and name a new project to include one or more DNP
OPC servers.
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 Projecton the left.
Enter a Project Name. The Description is optional.
4. Click Create.
5. Click Open Project.
O v e rvi e w o f c o n fig u ra tio n3.2.
Before you can start using the DNP OPC Server, build and configure an object tree inStation Automation Builder 600 (SAB600) to define the Communication structure within
the Gateway object. An object tree contains the following branches:
Gateway
DNP LAN OPC Server
DNP LAN Channel
Logical Device objects
Logical Node objects
Data objects
After you have added the necessary objects to the object tree in the communication
structure, configure them.
The configuration work can basically be divided into two separate tasks:
1. building the object tree, and
2. configuring object properties.
First, build an object tree. This is done by adding objects to the object tree, see
3.3.1,General about building object tree.
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In the object tree communication view, you can see the DNP OPC Server object and its
child objects such as channels, devices, and data objects. After you have added the
necessary objects to the object tree in the communication structure, configure them, see
3.4.1,General about configuring objects.
When configuring OPC servers the following characters cannot
be used in object names:\ ` ' ' #
Building object tree3.3.
G e n er a l a b o ut b u i l d i n g o bj e c t tr e e3.3.1.
The object tree is built in the Communication structure of SAB600. It is 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 Communication
structure:
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
You can right-click the object type and select New> New. A New Object window
appears. Select the object type you want to add and click OKor double-click it.
You can copy the object.
Add the objects in the following order:1. Gateway
2. DNP LAN OPC Server
3. DNP LAN Channel
4. Logical Device objects
5. Logical Node objects
6. Data objects
For information on building a substation structure, see COM600 HMI Configuration
Manual.
A d d i ng G ate w a y o b j e ct3.3.2.
To start building the object tree, add a Gateway object in the Communication structure
by selecting the project name, right-click it and select New > Communication > Gate-
way.
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A d di n g DN P O P C Se r ve r o b je c t3.3.3.
After the Gateway object has successfully been added, you can continue building the
object tree by adding DNP OPC Server object.
To add DNP OPC Server object:
1. Select the Gateway object in the communication structure and right-click it.
2. Add DNP OPC Server object.
By using the SCL Import function, it is possible to import an entire servers or individual
device's configurations without having to insert them manually. To open the SCL Import
function, 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 other
ways to build this structure, depending on the configuration of an individual device, for
example device-related object types and wizards. Typically, Connectivity Packages
include SCL description files which must be installed. For further information on these
Connectivity Packages, see the Connectivity Package of a certain device in the product
documentation.
A d di n g DN P C h an n el o b je c ts3.3.4.
After the server object has been successfully added, you can continue building the object
tree by adding DNP Channel objects.
To add DNP Channel object:
1. Select DNP OPC Server object.
2. Right-click the DNP OPC Server object.
3. Add DNP Channel object.
4. Rename the new object. The names of the DNP Channel objects have to be unique.
A d d i ng D N P I E D ob j e c ts3.3.5.
After adding a subnetwork you can add device objects.
To add a Device object:
1. Select a Subnetwork object.
2. Add DNP IED object.
3. Rename the new object. The names of the devices within DNP channel have to be
unique.
The maximum number of devices per each subnetwork is 30.
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With SCL import function, you can import new objects with configurations from an
existing file. Right-click the device and select SCL Importfrom the shortcut menu
To import a new configuration file:
1. Click Select File.
2. Browse to a new configuration file from the appearing dialog.
3. Select the file and click Open.
4. Select the device to import from the drop-down list. You can preview the configur-
ation on the right.
5. Click Import.
The new preconfigured objects appear in the object tree. If the configuration file is large,
the import may take time. To import a configuration file for a different device, right-
click the device, select SCL Importagain and repeat the steps above.
A d di n g L o gi c al D e vi c e o b je c ts3.3.6.
To add a Logical Device object:
1. Select a DNP IED object and right-click it.
2. Add a Logical Device object.
3. Rename the new object. The names of the Logical Device objects have to be unique.
Each physical device must have at least one Logical Device
object as a child object.
A d di n g Lo g ic a l N o de o b je c ts3.3.7.
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 child
object to a Logical Device object.
Adding data objects3.3.8.
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.
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Configuring objects3.4.
G e n er a l a b o ut c o n fi g u r in g o b j e c ts3.4.1.
After the objects have been added, configure the object properties. Figure3.4.1-1shows
an example of how to use SAB600 to configure the object properties for DNP OPC
Server.
To configure an object:
1. Select an object in the object tree of the communication structure.
2. The object properties appear now in the Object Properties window. The properties
and their values can be viewed as shown in Figure3.4.1-1.
DNP _O bject _P ropert ies. png
Figure3.4.1-1Example of object properties in the Objects Properties window
3. Select the property you want to configure. Depending on the property value type,
configure 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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C o n fig u r i ng DN P O P C S e r ve r p r o pe r ti es3.4.2.
T ab l e 3 . 4 .2 - 1 D N P O P C S e r ve r p r o pe r ti e s
Descr iptionVa l ue o r Va l ue r a ng e /D e fa u ltPr oper ty/Par ameter
Basic
I n st a nc e i d en t if i ca t io n o f d i a-
g n o s ti c O P C a l a r m a n d e v e nt
server.
AE Prog ID
I n st a nc e i d en t if i ca t io n o f d i a-
g n o s ti c O P C d a t a a c ce s s
server.
D A Pr og I D
C o n fig u r i ng D N P O P C S e r ve r L A N C h a nn e l p r o pe r ti es3.4.3.
The DNP OPC Server LAN Channel properties that can be configured and value ranges
for them can be found in Table3.4.3-1. The actual configuration by using SAB600 is
performed as described in 3.4.1,General about configuring objects.
Ta b le 3 . 4. 3 -1 D N P L A N C h an n el p ro p er t ie s
Descr iptionVa l ue o r Va l ue r a ng e /D e fa u ltPr oper ty/Par ameter
Basic
S p ec i fi e s if c h an n el i s i n u s e o r
not.
I n U se
No t I n U se
D ef au lt : I n U se
I n u se
Communication Por t
I P a d dr e ss o f E t he r ne t i n te r fa c e
i n C OM 6 00 .
127.0.0.1Local Address
Communication Contr ol
S p e c if i e s i f i n c o mi n g c o n n ec -
t i o n r e q u es t s a r e c h e ck e d .
True
False
D e f a ul t : T r ue
C h e c k C o n n e ct i o n R e q u es t
M a x im u m t i m e i n m i l l is e c o nd so f t he T CP c on ne ct o pe ra ti on .
0 t o 6 55 35
D e fa u lt : 5 0 0
C o n n ec t i o n t i m e ou t
C o n n ec t i o n p r o t oc o l u s e d .TCP/IP
UDP/IP
D e f a ul t : T C P / IP
C o n n ec t i o n T yp e
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Descr iptionV al u e o r V al u e r a ng e /D e fa u ltPr oper ty/Par ameter
S pe ci fi es i f R es et o f t heR em ot e L in k i s d is ab le d. D is -
a b li n g t h is c o nf i gu r at i on i s u se -f u l w h en t h e l i nk i n it i al i za t io n i s
n ot n ee de d i n b ot h d ir ec ti on s
o r if i t i s po ss ib le t ha t t hi s m es -
s a g e c o l l id e s w i t h o t h e r t r a n s-m i t t ed f r a m es f r o m t h e I E D s
s h ar i ng t h e c h an n el .
True
False
D e f a ul t : F a l s e
D is ab le R es et o f t he R em ot eLink
M a xi m um w a it t i me i n m i ll i -s ec on ds w it hi n w hi ch t he f ir st
b y t e o f a l i nk l ay e r r e s po n s e
s h ou l d h a ve b e en r e ce i ve d .
0 t o 6 55 35
D e fa u lt : 2 0 00
Header Timeout
S p ec i fi e s w he t he r t h e l i nk l a ye r
c o nf i rm at i on s a r e i n u s e.
N ot I n Use
I n U se
D ef au lt : I n U se
Link Layer Confirmations
Enabled
M ax im um l e ng th o f a d at a
fragment.
50 to 249
D e fa u lt : 2 3 0
M a x im u m M e s s a ge L e n g th
D e l a y i n m i l l is e c on d s b e t w ee n
retransmissions.
0 t o 6 55 35
D e fa u lt : 0
Maximum Random Delay for
Retransmission
S p ec i f ie s i f o n l y o n e a p p li c at i o n
l a y e r c o m ma n d ( e . g . p o l l ) m a y
b e a c ti v e a t a n y t i me . E n ab l in g
t h i s c o n f ig u r a ti o n i s u s e f ulw h e n t h e c o mm u n i ca t i o n h a r d -
w a r e d o e s n o t s u p p or t c o l l i si o nd e t e ct i o n . T h e p o l l i n t e r va l s
d e fi n ed w i th t h e t o pi c c o nf i gu r -
a t io n t o ol de f in e t h e i n te r va l s
t he I ED is tr ie d t o b e p ol le d.
When multiple IEDs are connec-
t e d, t h e a c tu a l po l li n g i n te r va lm ay b e l on ge r. W he n m ul ti p le
s i m ul t a n e ou s a p p l i ca t i o n l a y e r
c o mm an d s a r e a l lo w ed , t h e
c o m ma n d s t r a n sm i s si o n i s n o t
r el at ed t o t he s ta te o f t he o th er
I E Ds c o nn e ct e d t o t h e s a mec o m mu n i c at i o n c h a n ne l . T h i s
m od e o f o pe ra ti on c an b e u se d
i n s y st e m s w i t h c o l l is i o n d e t e c-
tion.
True
False
D e f a ul t : F a l s e
O n l y O n e A c t iv e A p p l i ca t i o n
L a y e r C o mm a n d E n a b le d
D a t a po l l i n g p e r i od .0 to 255
Default:10
P o ll i ng P e ri o d
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Descr iptionVa l ue o r Va l ue r a ng e /D e fa u ltPr oper ty/Par ameter
T h e t i me i n m i ll i se c on d s t h atD N P 3. 0 l i n k w a i t s f o r r e c e iv e d
message.
0 to 255
D e fa u lt : 1 5
ResponseTimeout
S p ec i fi e s i f ' Te s t F u nc t io n f o r L i n k ' i s e n a b l ed .
True
False
D e f a ul t : F a l s e
Te s t F u nc t io n f o r L i n k
D e l a y i n m i l l i se c o n ds b e t w ee n
t e st f u nc t io n o f l i n k c o mm an d s.
I f v al ue i s z er o ( 0) , t he t es tf u nc t io n o f l i nk c o mm an d i s n o t
sent.
0 t o 6 55 35
D e fa u lt : 2 0
Te s t F u n c ti o n f o r L i n k I n t e rv a l
C o n fig u r i ng D N P L A N D e vi c e3.4.4.
Table3.4.4-1lists the configurable properties for DNP Devices and value ranges for
these properties. The actual configuration by using SAB600 is performed as described
in 3.4.1,General about configuring objects.
T ab l e 3 . 4 .4 - 1 D N P L A N I E D p r o pe r ti e s
Descr iptionVa l ue o r V al u e r a ng e / D e fa u ltName
Basic
D i a g no s t i cs E n a b l edTrue
False
D e f a ul t : F a l s e
Diagnostics enabled
C o n t ro l s w h e t he r t h e d e v i ce c o mm u n i ca -
t i on i s i n it i al l y i n u s e o r no t .
I n u se
No t i n u se
D ef au lt : I n u se
I n U se
S p ec i fi e s wh e th e r t he d e vi c e i s i n s i mu l a-
t io n m od e o r no t.
True
False
D e f a ul t : F a l s e
S i m u la t i o n M o d e
I f Tr ue , t he n n o e ve nt s a re g en er at ed f or I ED i f t he n ew v al ue a nd q ua li ty a re t he
s am e a s t he c ur re nt v al ue a nd q ua l it y.
True
False
E v e n t o n l y w i t hc h an g ed v a lu e
I f Tr ue , n o i s e ve nt g en er at ed w he n t hei t em ta g i s u p da t ed f o r t h e f i rs t t i me .
True
False
S u p p re s s e v e n t o nf i rs t u p da t e
Addr esses
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Descr iptionV al u e o r Va l ue r a ng e / D e fa u ltName
D e f i ne s t h e i n t e r ne t a d d r e ss o f t h i s I E D .P o rt n u mb e r c a n b e c o nf i gu r ed b y u s in g
s e mi c ol o n ( G W 4 . 0 o r n ew e r) . F o r e x a mp l e , " 1 2 7 .0 . 0 . 1 ;8 0 8 0 ".
127.0.0.1I n t e rn e t A d d r es s
S t at i on a d dr e ss o f t h e m a st e r s t at i o n.0 t o 6 553 5
D e fa u lt : 1
Master Address
S ta ti on a dd re ss o f t he D NP 3 .0 s la ve s ta -
tion.
0 t o 6 553 5
D e fa u lt : 1
S l a v e A d d r es s
Communication
Contr ol
Allocating application of the station.0 to 32
D e fa u lt : 0
Allocating Applica-
tion
W h en t r ue , c o ns e qu e nt a p pl i ca t io n l a ye r
r es po ns e t im eo ut s s et t he s ta ti on t o s us -p en de d s ta te a nd t he c or re sp on di ng p ro -
c e ss ob j ec t s a r e s e t t o i n va l id s t at e .
True
False
D e f a ul t : F a l s e
Automatic Suspen-
sion
Address offset between the process
o b j e ct s fo r st a t i c d a t a a n d e v e nt s w i t h t h e
s a me D N P 3 . 0 a d dr e ss ( in d ex ).
0 t o 6 553 5
D e fa u lt : 0
E v e nt O f f se t
T he n l en gt h o f p ul se i n m il li se co nd s u se d
i n t he o ut pu t c omm an ds o f t he c on tr ol
relay.
0 t o 6 553 5
D e fa u lt : 0
P ul se L en gt h O ff
For Control Relay
Output
T he n l en gt h o f p ul se i n m il li se co nd s u se d
i n t he o ut pu t c omm an ds o f t he c on tr ol
relay.
0 t o 6 553 5
D e fa u lt : 0
P ul se L en gt h O n
For Control Relay
Output
W h e n T ru e , a st a t i c d a t a ( c l a ss 0 ) po l l
r eq ue st i s a l wa ys s en t w he n t he o bj ec t
s t at u s o f t h e D NP m a st e r st a ti o n g e ts t he
v al ue z er o ( 0) .
True
False
D e f a ul t : T r ue
Static Datapoll
F u n ct i o n c o d e f o r T i me S y n ch r o n i za t i o n .D i r e ct t i m e s y n ch r o n i za t i o n
Delay compensated
T i me S y n ch r o n i za -
t i on F u nc t io n
T im e i n s e co n ds b e tw e en d e vi c e t i me
updates.
0 t o 6 553 5
D e fa u lt : 0
T i me S y n ch r o n i za -
t i on I n te r va l
Command Hand-
ling
M ax i mu m ti m e i n s e co n ds t h at t h e m a st e r
s ta t io n w a it s f o r a r e sp o ns e t o a c om ma n d
r e qu e st f r om t h e s l av e .
0 to 600
D e fa u lt : 1 5
Maximum Response
Time
Defines application level confirmation
handling.
D e f a ul t : D i s ab l eProcess Data Con-
firmation
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Descr iptionVa l ue o r V al u e r a ng e / D e fa u ltName
M a xi m um t i me i n s e co n ds t h at t h e D NP3 . 0 a p pl i ca t io n l a ye r w a it s f o r a r e p ly f r om
t h e s l av e .
0 to 65
D e fa u lt : 1 0
Reply Timeout
Lengths
L en gt h o f d at a o bj e ct a dd re ss u se d i n D NP
3 . 0 m e ss a g e s.
1 t o 3
D e fa u lt : 2
Information Address
Length
C o n t ro l A u t h or i z a -
tion
O PC p at h o f t he s ta ti on r em ot e s wi tc h
p o si t io n u s ed w i th t h is d e vi c e. T h e f o rm at
i s N o de # Pr o g ID F o r O P C S e rv e r# C ha n n el
Name\IED Name\Logical Device
N a m e\ L o g i ca l N o d e N a m e\ D a t a O b j e ct
N a me E . g. G W# A BB . MO D -BUS_SERIAL_OPC_DA_Server.Instance[1]#Chan-
nel[1\IED1\LD1\GGIO1\loc
User definedStation/Remote
S w i t ch O P C P a t h
C o n fig u r i ng L o g i ca l D e v i ce p r o pe r ti es3.4.5.
Ta b le 3 . 4. 5 -1 L o gi c al D e vi c e p ro p er t ie s
Descr iptionVa lu e o r Va lu e r an ge /
Default
Pr oper ty/Par ameter
Basic
O PC p at h o f t he s ta ti on r em ot e s wi tc h
p os it io n t o b e u se d w it h t hi s d ev ic e.
T h e f o rm a t i s N o de # Pr o gI D F or O P C
Server#Channel Name\IED
Name\Logical Device Name\Logical
N o de N a me \ Da t a O bj e ct N a me e . g.
GW#ABB.Mod-bus_Serial_OPC_DA_Server.
Instance[1]#Channel1\IED1\LD1
\GGIO1\loc
S t a t i on / R e mo t e S w i t ch
OPC Path
C o n fig u r i ng L o g i ca l N o d e p r o pe r ti es3.4.6.
T ab l e 3 . 4 .6 - 1 C o n fi g u ri n g L o g ic a l N o d e p r o pe r t ie s
Descr iptionVa l ue o r V al u e r a ng e / D e fa u ltPr oper ty/Par ameter
Basic
LLN0
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Descr iptionV al u e o r Va l ue r a ng e / D e fa u ltPr oper ty/Par ameter
L o g i ca l n o de c l a s sLLN0L o g i ca l N o de C l a ss
GGIO1L o g i ca l n o de c l a s sANCR, ARCO, ATCC, AVCO,
L P HD , C A LH , C CG R, C I LO ,
C P OW, C S WI , G AP C , G GI O ,
G S AL , I A RC , I H MI , I T CI , I T MI ,
M DI F, M HA I , M HA N , M MT R ,M MX N , M MX U , M S QI , M S TA ,
P D IF, P DI R , P D IS , P D OP,
P D UP, P F RC , P H AR , P H IZ ,
P I OC , P MR I , P MS S , P OP F,
P PA M , P S C H, P S E F, P T E F,
P TO C, P TO F, P TO V, P T RC ,P T TR , P T UC , P T UV, P U PF,
P T UF, P V OC , P V PH , P Z SU ,
R D RE , R A DR , R B DR , R D RS ,
R B RF, R D IR , R F LO , R P SB ,
R R EC , R S YN , S A RC , S I MG ,S IM L, S PD C, X CB R, X SW I,
T C TR , T V TR , Y E FN , Y LT C ,
Y P SH , Y P TR , Z A XN , Z B AT,
Z B SH , Z C AB , Z C AP, Z C ON ,
Z G EN , Z G IL , Z L IN , Z MO T,
Z R EA , Z R RC , Z S AR , Z T CF,ZTCR
D e f a ul t : G G I O
L o g i ca l N o de C l a ss
L o g i ca l n o d e i n s t an c e n u m b er L N I ns t R an ge i s f ro m 1 -
2147483647
L o g i ca l N o d e I n s t an c e
Prefix for logical nodeD e fa u lt : N o neL o g i ca l N o de P r e f ix
C o nf i gu r in g d at a o b j ec t s f o r i n te r na l O P C d at a3.4.7.
G e ne ra l a b ou t c o nf i gu r in g d a ta o b j ec t s f o r I n te r na l O P C D at a3.4.7.1.
Internal data objects describe internal status information of an OPC server, for example
whether the connection between the OPC Server and the device (IED) is working or not.
When internal information of an OPC server needs to be transferred, that is informationthat does not originate from a device, to an OPC Client, virtual data objects must be
created.
OPC Server supports three internal data object types that provide status information:
3.4.7.2,Integer status (INS)
3.4.7.4,Single point status (SPS)
3.4.7.3,Controllable single point (SPC) for OPC internal data
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1MRS756566G r i d A u to ma ti o n C o n tro l l e r C O M 6 00 4 . 0
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I nt eg er s ta tu s ( IN S)3.4.7.2.
T ab l e 3 . 4 .7 . 2 -1
Descr iptionVa l ue o r V al u e r a ng e / D e fa u ltPr oper ty/Par a-meter
Basic
C o mm o n d a ta c l as s a c co r di n g t o I E C
61850
INSC o mm o n D a ta
Class
Addr esses
I t em t a g p a th f o r th e i n te r na l s ta t usi n f o r ma t i o n . T h e i n t e r na l s e r ve r t a g s t h at
c an b e u se d a re l oc at ed i n t he A tt ri bu te s
n o de s t h at a re l o ca t ed u n de r t h e r o ot , l i ne ,
a nd I ED n od es . W he n a n a tt ri bu te t ag i s
r e fe r re d t o i n t h e i n te r na l i te m de f in i ti o nsb el ow, i t i s p os si bl e t o u se e it he r t he w ho let ag p at h o r j us t t he p at h r el at iv e t o t he I ED
( t h e i n t e rn a l t ag s a re c o n fi g u r e d p e r IE D ) ;
for example, Attributes\Diagnostic coun-
t e r s \T ra n s mi t t e d d a t a m e s s ag e s . W h e n
t he wh ol e p at h i s u se d, i t mu st b e p re -
c e de d b y a s l as h ( / ) c ha r ac t er, f o r example, /Channel Name\Attributes\Dia-
g n o s ti c c o u n te r s \T r an s m it t e d d a t a m e s -
sages.
D e f a ul t : N o n eI t e m Ta g P a t h
C o nt r ol l ab l e s i ng l e p o in t (S P C) f or O P C i n te r na l d a ta3.4.7.3.
T ab l e 3 . 4. 7 .3 - 1 C o nf i gu r ab l e S P C ( f or O P C i n te r na l d a ta ) p r op e rt i es f or O P C S e rv e rs
Descr iptionVa l ue o r V al u e r a ng e / D e fa u ltPr oper ty/Par a-
meter
Basic
61850-TypeSPC61850-Type
Sub-Type
S ub t yp e o f o bj ec tS u b Ty p e
Addr esses
C o il a d dr e ss f o r t h e c o nt r ol . C o il ( 0 X r e fe r -
e n c e ) a d d r e ss r a n g e 1 . . . 9 99 9 . A d d r es s 0
e q ua l s t o n o i n fo r ma t io n a v ai l ab l e.
0...65535Control Coil
C o i l o r in p u t a d d r es s f o r t h e i n d i ca t i o n .
C oi l = 0 X r ef er en ce a dd re ss r an ge
1 .. .9 99 9 o r i n p ut = 1 X r ef er en ce a dd re ss
r a ng e 1 0 00 1 .. . 19 9 99 . A d dr e ss 0 e q ua l s
t o n o i n fo r ma t io n a v ai l a bl e .
0...65535I n d i ca t i o n C o i l / In p u t
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S i ng l e p o in t s t at u s ( S PS )3.4.7.4.
Ta b le 3 . 4. 7 . 4- 1 C o nf i gu r ab l e S P S ( f or O P C i n te r na l d a ta ) p r op e rt i es f o r O P C s e rv e rs
Descr iptionV al u e o r Va l ue r a ng e / D e fa u ltPr oper ty/Par a-meter
Basic
C o mm on d a ta c l as s a c co r di n g t o I E C
61850
SPSC o mm o n D a ta
Class
Addr esses
I t em t a g p a th f o r th e i n te r na l s ta t usi n f o rm a t i on . T h e i n t e r na l s e r ve r t a g s t h a t
c an b e u se d a re l oc at ed i n t he A tt ri bu te s
n o de s t h at a r e l o ca t ed u n de r t h e r o ot , l i ne ,
a nd I ED n od es . W he n a n a tt ri bu te t ag i s
r e fe r re d t o i n t h e i n te r na l i te m de f in i ti o nsb el ow, i t i s p os si bl e t o u se e it he r t he w ho let ag p at h o r j us t t he p at h r el at iv e t o t he I ED
( t he i n te r na l t a g s a r e c o nf i gu r ed p e r I E D) ;
e.g. Attributes\Diagnostic counters\Trans-
m i tt e d d a ta m es s ag e s. W h en t h e w h ol e
p at h i s u se d, i t m us t b e p re ce de d b y a
s l as h ( / ) c h ar a ct e r, e . g. / C ha n ne lName\Attributes\Diagnostic counters\Trans-
m i t t ed d a t a m e s s ag e s .
I t e m Ta g P a t h
Configuring data objects3.4.8.
General about configuring data objects3.4.8.1.
Object properties of the data objects are listed in the following tables.
When configuring address values for DNP IED data objects, the valid address range is
0 - 65535. If the value is -1, then the address is not available.
Directional protection activation information (ACD)3.4.8.2.
T ab l e 3 . 4 .8 . 2 -1 C o n fi g u ra b l e A C D pr o p er t i es f o r OP C c li e n t
Descr iptionV al u e o r Va l ue r a ng e / D e fa u ltP r o p er t y / P a r a -
meter
Basic
C o mm on d a ta c l as s a c co r di n g t o I E C
61850.
ACDC o mm o n D a ta
Class
Addr esses
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Descr iptionVa l ue o r V al u e r a ng e / D e fa u ltP r o p e rt y / P a r a -
meter
General Index0...65535
D e fa u lt : 0
General Index
Neutral Index0...65535
D e fa u lt : 0
Neutral Index
P h as e A I n d ex0...65535
D e fa u lt : 0
P h as e A I n d ex
P ha se B I nd ex0...65535
D e fa u lt : 0
P ha se B I nd ex
P h as e C I n d ex0...65535
D e fa u lt : 0
P h as e C I n d ex
Common
C la ss o f A SD U. D at a s en t f ro m t he s la vet o t he m as te r c an b e a ss ig ne d t o f ou r
c l as se s . D a ta i n c l as s 1 i s s e nt w i th h i gh e r
p r io r it y t h an d a ta in c l as s 3 .
Class 0...3
D e f a ul t : C l a s s 0
Class
M a xi m um u p d at e r a te o f s i gn a l s ta t e
c h an g es b e tw e en t h e O PC s e rv e r a nd
c li en t i n m il li se co nd s. 0 m ea ns t ha t t he
s e r ve r se n d s a l l th e c h a n ge s to t h e c l i e nt .
0...65535
D e fa u lt : 0
U p da t e R a te
D a ta C l a s s S p e-
cific
O b j e ct n u m be r f o r i n d i c at i o n .B i na r y i n pu t ( 1 , 2 )
B i n a ry o u tp u t ( 1 0 )
D e fa u lt : B i na r y i n pu t ( 1 , 2 )
I n d i ca t i o n O b j e ct
D ef in es i f a ll ch an ge s i n v al ue a re s en t t o
t h e m a st e r.
True
False
D e f a ul t : F a l s e
S e n d A l l U p d a te s
D ef in es i f a va lu e i s s en t a s d ou bl e p oi nt .True
False
D e f a ul t : F a l s e
S e n d A s D o u b le
Point
De fi ne s i f t he va lu e o f a me ssa ge i sinverse.
True
False
D e f a ul t : F a l s e
S e n d A s In v e rs eValue
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Descr iptionV al u e o r Va l ue r a ng e / D e fa u ltP r o p er t y / P a r a -
meter
S pe ci fi es t he t yp e o f t he t im es ta mp a
m es sa ge i s s en t w it h.
S e n d a s s t a t ic d a t a ( a l w ay s
w i th o ut t i me )
E v en t w i th o ut t i me
E ve nt w it h t im e
E ve nt w it h r el at iv e t im e ( va li d
for binary inputs only)
D ef au lt : E ve nt w it h t im e
Ti me A nd Ty pe
Variation
Protection activation information (ACT)3.4.8.3.
T ab l e 3 . 4 .8 . 3 -1 C o n fi g u ra b l e A C T pr o p er t i es f o r OP C c li e n t
Descr iptionV al u e o r Va l ue r a ng e / D e fa u ltP r o p er t y / P a r a -
meter
Basic
C o mm on d a ta c l as s a c co r di n g t o I E C
61850.
ACTC o mm o n D a ta
Class
Addr esses
General Index0...65535
D e fa u lt : 0
General Index
Neutral Index0...65535
D e fa u lt : 0
Neutral Index
P h as e A I n d ex0...65535
D e fa u lt : 0
P h as e A I n d ex
P ha se B I nd ex0...65535
D e fa u lt : 0
P ha se B I nd ex
P h as e C I n d ex0...65535
D e fa u lt : 0
P h as e C I n d ex
Common
C la ss o f A SD U. D at a s en t f ro m t he s la ve
t o t he m as te r c an b e a ss ig ne d t o f ou r c la ss es . D at a i n c la ss 1 i s s en t w it h h ig he r
p r io r it y t h an d a ta i n c l as s 3 .
Class 0...3
D e f a ul t : C l a ss 0
Class
M ax i mu m u p da t e r a te o f s i gn a l s ta t ec h a n ge s b e tw e e n t h e O P C se r v e r a n d
c li en t i n m il li se co nd s. 0 m ea ns t ha t t he
s e rv e r s en d s a ll t h e c h an g es t o t h e c l ie n t.
0...65535
D e fa u lt : 0
U p da t e R a te
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Descr iptionVa l ue o r V al u e r a ng e / D e fa u ltP r o p e rt y / P a r a -
meter
D a ta C l a s s S p e-
cific
O b j e ct n u m be r f o r i n d i c at i o n .B i na r y i n pu t ( 1 , 2 )
B i n a ry o u tp u t ( 1 0 )
D e fa u lt : B i na r y i n pu t ( 1 , 2 )
I n d i ca t i o n O b j e ct
D ef in es i f a ll ch an ge s i n v al ue a re s en t t o
t h e m a st e r.
True
False
D e f a ul t : F a l s e
S e n d A l l U p d a te s
D ef in es i f a va lu e i s s en t a s d ou bl e p oi nt .True
False
D e f a ul t : F a l s e
S e n d A s D o u b le
Point
De fi ne s i f t he va lu e o f a me ssa ge i s
inverse.
True
False
D e f a ul t : F a l s e
S e n d A s In v e rs e
Value
S pe ci f ie s th e t yp e o f t he t im es ta mp a
m e ss a ge i s se n t w i th .
S e n d a s s t a t i c d at a ( a l w a ys
w i t h ou t t i m e )
E ve n t w i th o ut t i me
E ve nt w it h t im e
E ve nt w it h r el at i ve t im e ( va li d
for binary inputs only)
D ef au lt : E ve nt w it h t i me
Ti me A nd Ty pe
Variation
Analog set point (APC)3.4.8.4.
T ab l e 3 . 4 .8 . 4 -1 C o n fi g u ra b l e A P C p ro p e rt i e s f o r OP C c l ie n t
Descr iptionVa l ue o r V al u e r a ng e / D e fa u ltP r o p e rt y / P a r a -
meter
Basic
C o mm o n d a ta c l as s a c co r di n g t o I E C
61850.
APCC o mm o n D a ta
Class
Addr esses
Control index.0...65535
D e fa u lt : 0
Control Index
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B i na r y c o un t er r e ad i ng ( B C R )3.4.8.5.
T ab l e 3 . 4 .8 . 5 -1 C o n fi g u ra b l e B C R p ro p e rt i e s
Descr iptionV al u e o r Va l ue r a ng e / D e fa u ltP r o p er t y / P a r a -meter
Basic
C o mm on d a ta c l as s a c co r di n g t o I E C
61850.
BCRC o mm o n D a ta
Class
Addr esses
I n d i ca t i o n i n d e x.- 1 t o 6 55 35
D e fa u lt : - 1
I n d i ca t i o n I n d e x
D a ta C l a s s S p e-
cificObject number for counter.Binary counter (20)
F r o z en c o u n te r ( 2 1 )
D e f a ul t : B i n a ry c o u n t e r ( 2 0 )
Counter Object
S p ec i fi e s t h e m u lt i pl i er f o r c u r re n t S I u n it .D e f a ul t : D e k aMultiplier
S I u n it f o r m e as u re m en t a s d e sc r ib e d i n
IEC61850
D e f a ul t : D i m en s i o nl e s sUnit
Binary controlled step position information (BSC)3.4.8.6.
T ab l e 3 . 4 .8 . 6 -1 C o n fi g u ra b l e B S C p ro p er t i es
Descr iptionVa l ue o r V al u e r a ng e /
Default
P r o p er t y / P a r a me t e r
Basic
C o m mo n d a t a c l a ss ac c o rd i n g t o I E C 6 1 8 5 0 .BSCC o m mo n D a t a Cl a s s
Addr esses
Control index.-1 t o 6 55 35
D e fa u lt : - 1
Control Index
I n d i ca t i o n i n d e x.-1 t o 6 55 35
D e fa u lt : - 1
I n d i ca t i o n I n d e x
D a t a C l a s s S p e c i fi c
30
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D N P 3 . 0 L A N /W AN M a s t e r ( OP C ) U s e r' s M a n ua l
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Descr iptionV al u e o r Va l ue r a ng e /
Default
P r o p e rt y / P a r a m et e r
Qualifier for control.Momentary
Latched
Pulsed
D e f a ul t : M o me n t a r y
C o n t ro l C o d e Q u a l if i e r
Va r i a t io n f o r c o n t r o l0 t o 6 55 35Control Variation
S p e ci f i e s u s i n g t w o -s t e p, s e l ec t - be f o re - o p er a t e
m e t h od f o r i s s ui n g c o n t ro l r e q u e st o r n o t .
D i r e ct O p e r at e
S e le c t B e fo r e O p er a te
D e fa u l t: D i re c t O p er a t e
Operate
S c a le a n d U ni t
S ca le u se d w it h t hi s t yp e.D e fa u lt : N o neScale
C o mp l ex m e as u re d v a l ue ( C MV )3.4.8.7.
T ab l e 3 . 4 .8 . 7 -1 C o n fi g u ra b l e C M V p ro p e rt i e s
Descr iptionVa l ue o r V al u e r a ng e / D e fa u ltP r o p e rt y / P a r a -
meter
Basic
C o mm o n d a ta c l as s a c co r di n g t o I E C61850.
CMVC o mm o n D a taClass
Addr esses
I n d i ca t i o n i n d e x.-1 t o 6 55 35
D e fa u lt : - 1
Index
Sub-Type
M V s u b- t yp eSimpleSubtype
D a ta C l a s s S p e-
cific
O b j e ct n u m be r f o r i n d i c at i o n .Analog input (30, 32)
Analog output (40)
D ef au lt : A na lo g i np ut ( 30 , 3 2)
I n d i ca t i o n O b j e ct
S c a le a n d U ni t
S p e ci f i e s t h e m u l t ip l i e r f o r c u r r en t S I u n i t .D e f a ul t : D e k aMultiplier
S p e ci f i e s t he n u m b er o f d e c i ma l s s h ow n
in HSI. (0 to 9)
D e fa u lt : 0P h a s e N u m be r of
Decimals
S c al e u s ed w i th t h is t y pe .D e f a ul t : N o n eScale
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Descr iptionV al u e o r Va l ue r a ng e / D e fa u ltP r o p er t y / P a r a -
meter
S I u n it f o r m e as u re m en t a s d e sc r ib e d i n
IEC61850
D e f a ul t : D i m en s i o nl e s sUnit
L i m i t Va l u e S u p e r-
vision
Maximum value for measurementMax
Minimum value for measurementMin
T ab l e 3 . 4 .8 . 7 -2 A d d it i o na l c o n fi g u ra b l e p r o pe r t ie s f o r S u b -T yp e L i m it C h e ck
Descr iptionV al u e o r Va l ue r a ng e / D e fa u ltP r o p er t y / P a r a -
meter
MVSubTypeDescriptionL i mi t C h ec kSub-Type
L i m i t Va l u e S u p e r-vision
H i gh l i mi t f o r me a su r em e nt . E ve n t i s cr e -a t ed w h en v a lu e c r os se s t h e l i mi t .
D e fa u lt : 0High
H i gh - hi g h l i mi t f o r m e a su r em e nt . E v en t i s
c re at ed w he n v al ue c ro ss es t he l im it .
D e fa u lt : 0High-High
L o w l i m i t f o r m e a su r e me n t . E v e nt i s c r e -
a t ed w h en v a lu e c r os se s t h e l i mi t .
D e fa u lt : 0Low
L o w -l o w l i m i t f o r m e a su r e me n t . E v e nt i s
c re at ed w he n v al ue c ro ss es t he l im it .
D e fa u lt : 0Low-Low
Delta (DEL)3.4.8.8.
T ab l e 3 . 4 .8 . 8 -1 C o n fi g u ra b l e D E L p ro p e rt i e s
Descr iptionV al u e o r Va l ue r a ng e / D e fa u ltP r o p er t y / P a r a -
meter
Basic
C o mm on d a ta c l as s a c co r di n g t o I E C
61850.
DELC o mm o n D a ta
Class
Addr esses
P ha se A B I nd ex- 1 t o 6 55 35
D e fa u lt : - 1
P ha se A B I nd ex
P h a se B C I n d e x- 1 t o 6 55 35
D e fa u lt : - 1
P h a se B C I n d e x
P h a se C A I n d e x- 1 t o 6 55 35
D e fa u lt : - 1
P h a se C A I n d e x
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Descr iptionVa l ue o r V al u e r a ng e / D e fa u ltP r o p e rt y / P a r a -
meter
Sub-Type
D E L S u bt y peD EL S i mp l eSubtype
D a ta C l a s s S p e-
cific
O b j e ct n u m be r f o r i n d i c at i o n .Analog input (30, 32)
Analog output (40)
D ef au lt : A na lo g i np ut ( 30 , 3 2)
I n d i ca t i o n O b j e ct
S c a le a n d U ni t
S p e ci f i e s t h e m u l t ip l i e r f o r c u r r en t S I u n i t .D e f a ul t : D e k aP h a s e M u l t ip l i e r
S p e ci f i e s t he n u m b er o f d e c i ma l s s h ow ni n H SI .0 t o 9
D e fa u lt : 0
P h a s e N u m be r of Decimals
S c al e u s ed w i th t h is t y pe .D e f a ul t : N o n eScale
S I u ni t f or m ea su re me nt a s d es cr ib ed i n
IEC61850
D e f a ul t : D i m en s i o nl e s sUnit
T ab l e 3 . 4 .8 . 8 -2 A d d it i o na l c o nf i g ur a b le p r o pe r t ie s f o r S u b -T yp e L i m i t C h e ck
Descr iptionVa l ue o r V al u e r a ng e / D e fa u ltP r o p e rt y / P a r a -
meter
S u b- t yp e o f c u rr e nt d a ta o b je c tD EL F ul lSub-Type
L i m i t Va l u e S u p e r -vision
H i gh l i mi t f o r me a su r em e nt . E v en t i s cr e -
a t ed w h en v a lu e c r os se s t h e l i mi t .
D e fa u lt : 0High
H i gh - hi g h l i mi t f o r m e a su r em en t . E v en t i sc r ea t ed w h en v a lu e c r os se s t h e l i mi t .
D e fa u lt : 0High-High
L o w l i m i t f o r m e a su r e me n t . E v e nt i s c r e -
a t ed w h en v a lu e c r os se s t h e l i mi t .
D e fa u lt : 0Low
L o w - lo w l i m i t f o r m e a su r e me n t . E v e nt i s
c r ea t ed w h en v a lu e c r os se s t h e l i mi t .
D e fa u lt : 0Low-Low
C o nt r ol l ab l e d o ub l e p o in t ( D PC )3.4.8.9.
T ab l e 3 . 4 .8 . 9 -1 C o n fi g u ra b l e D P C p ro p e rt i e s f o r OP C c l ie n t
Descr iptionVa l ue o r V al u e r a ng e / D e fa u ltP r o p e rt y / P a r a -
meter
Basic
33
G r i d A u to ma ti o n C o n tro l l e r C O M 60 0 4 . 01MRS756566
D N P 3 . 0 L A N / WA N M a s t er ( O P C ) U s er ' s M a nu a l
-
8/10/2019 Com600 4.0 Dnp 3.0 Lanwan Master Opc Usg 756566 Enf
34/78
Descr iptionV al u e o r Va l ue r a ng e / D e fa u ltP r o p er t y / P a r a -
meter
C o mm on d a ta c l as s a c co r di n g t o I E C
61850.
DPCC o mm o n D a ta
Class
Addr esses
Control index.0...65535
D e fa u lt : 0
Control Index
I n d i ca t i o n i n d e x.0...65535
D e fa u lt : 0
I n d i ca t i o n I n d e x
Common
C la ss o f A SD U. D at a s en t f ro m t he s la ve
t o t he m as te r c an b e a ss ig ne d t o f ou r
c la ss es . D at a i n c la ss 1 i s s en t w it h h ig he r p r io r it y t h an d a ta i n c l as s 3 .
Class 0...3
D e f a ul t : C l a ss 0
Class
M ax i mu m u p da t e r a te o f s i gn a l s ta t e
c h a n ge s b e tw e e n t h e O P C se r v e r a n dc li en t i n m il li se co nd s. 0 m ea ns t ha t t he
s e rv e r s en d s a ll t h e c h an g es t o t h e c l ie n t.
0...65535
D e fa u lt : 0
U p da t e R a te
D a ta C l a s s S p e-
cific
O b j e ct n u m b er f o r c o n t r o l .D e f a ul t : B i n a ry c o n t r o l o u t p u t
block (12).
Control Object
O b j e ct n u m b er f o r i n d i ca t i o n .B i na r y i n pu t ( 1 , 2 )
B i n a ry o u tp u t ( 1 0 )
D e fa u lt : B i na r y i n pu t ( 1 , 2 )
I n d i ca t i o n O b j e ct
D ef in es if a l l c ha ng es i n v al ue a re s en t t o
t h e m a s te r.
True
False
D e f a ul t : F a l s e
S e n d A l l U p d a te s
D ef in es if t he v al ue o f a me ss ag e i s
inverse.
True
False
D e f a ul t : F a l s e
S e n d A s I n v e rs e
Value
D e fi n es i f a va l ue i s se n t a s si n gl e p o in t .True
False
D e f a ul t : F a l s e
S e nd A s S i ng l e
Point
34
1MRS756566G r i d A u to ma ti o n C o n tro l l e r C O M 6 00 4 . 0
D N P 3 . 0 L A N /W AN M a s t e r ( OP C ) U s e r' s M a n ua l
-
8/10/2019 Com600 4.0 Dnp 3.0 Lanwan Master Opc Usg 756566 Enf
35/78
Descr iptionVa l ue o r V al u e r a ng e / D e fa u ltP r o p e rt y / P a r a -
meter
S pe ci f ie s th e t yp e o f t he t im es ta mp a
m e ss a ge i s se n t w i th .
S e n d a s s t a t i c d at a ( a l w a ys
w i t h ou t t i m e )
E ve n t w i th o ut t i me
E ve nt w it h t im e
E ve nt w it h r el at i ve t im e ( va li d
for binary inputs only)
D ef au lt : E ve nt w it h t i me
Ti me A nd Ty pe
Variation
D ev ic e N am e P la te ( DP L)3.4.8.10.
T ab l e 3 . 4 .8 . 1 0- 1 C o n fi g u ra b l e L P L p ro p e rt i e s
Descr iptionVa l ue o r V al u e r a ng e / D e fa u ltP r o p e rt y / P a r a -
meter
Basic
6 1 8 5 0 D a t a O b j e ctDPL6 1 8 5 0 D a t a O b j e ct
D a ta C l a s s S p e-
cific
Te x t s t ri n g d e sc r ib i ng h a rd w ar e r e vi s io n .1.0H a r d wa r e r e v i si o n
Te x t s t ri n g d e sc r ib i ng l o ca t io n .User defined
D e f a ul t : Va a s a
Location
Te x t s t r i ng d e s cr i b i n g s e r i al n u m be r.User defined.
D e f a ul t : A B B 1 23 4 5 6 78 9
Serial number
Te x t s t ri n g d e sc r ib i ng s o ft w ar e r e vi s io n .D e fa u lt : 1 . 0S o f t wa r e R e v is i o n
Te x t s t ri n g d e sc r ib i ng v e nd o r.ABBVendor
D o ub l e p o in t s t at u s ( D PS )3.4.8.11.
T ab l e 3 . 4 .8 . 11 - 1 C o n fi g u ra b l e D P S p r o pe r t ie s f o r O P C c l i en t
Descr iptionVa l ue o r V al u e r a ng e / D e fa u ltP r o p e rt y / P a r a -
meter
Basic
C o mm o n d a ta c l as s a c co r di n g t o I E C
61850.
DPSC o mm o n D a ta
Class
Addr esses
35
G r i d A u to ma ti o n C o n tro l l e r C O M 60 0 4 . 01MRS756566
D N P 3 . 0 L A N / WA N M a s t er ( O P C ) U s er ' s M a nu a l
-
8/10/2019 Com600 4.0 Dnp 3.0 Lanwan Master Opc Usg 756566 Enf
36/78
Descr iptionV al u e o r Va l ue r a ng e / D e fa u ltP r o p er t y / P a r a -
meter
I n d i ca t i o n i n d e x.0...65535
D e fa u lt : 0
I n d i ca t i o n I n d e x
Common
C la ss o f A SD U. D at a s en t f ro m t he s la ve
t o t he m as te r c an b e a ss ig ne d t o f ou r
c la ss es . D at a i n c la ss 1 i s s en t w it h h ig he r
p r io r it y t h an d a ta i n c l as s 3 .
Class 0...3
D e f a ul t : C l a ss 0
Class
M ax i mu m u p da t e r a te o f s i gn a l s ta t e
c h a n ge s b e tw e e n t h e O P C se r v e r a n d
c li en t i n m il li se co nd s. 0 m ea ns t ha t t hes e rv e r s en d s a ll t h e c h an g es t o t h e c l ie n t.
0...65535
D e fa u lt : 0
U p da t e R a te
D a ta C l a s s S p e-
cific
O b j e ct n u m b er f o r i n d i ca t i o n .B i na r y i n pu t ( 1 , 2 )
B i n a ry o u tp u t ( 1 0 )
D e fa u lt : B i na r y i n pu t ( 1 , 2 )
I n d i ca t i o n O b j e ct
D ef in es if a l l c ha ng es i n v al ue a re s en t t o
t h e m a s te r.
True
False
D e f a ul t : F a l s e
S e n d A l l U p d a te s
D ef in es if t he v al ue o f a me ss ag e i s
inverse.
True
False
D e f a ul t : F a l s e
S e n d A s I n v e rs e
Value
D e fi n es i f a va l ue i s se n t a s si n gl e p o in t .True
False
D e f a ul t : F a l s e
S e nd A s S i ng l e
Point
S pe ci fi es t he t yp e o f t he t im es ta mp a
m es sa ge i s s en t w it h.
S e n d a s s t a t ic d a t a ( a l w ay s
w i th o ut t i me )
E v en t w i th o ut t i me
E ve nt w it h t im e
E ve nt w it h r el at iv e t im e ( va li d
for binary inputs only)
D ef au lt : E ve nt w it h t im e
Ti me A nd Ty pe
Variation
36
1MRS756566G r i d A u to ma ti o n C o n tro l l e r C O M 6 00 4 . 0
D N P 3 . 0 L A N /W AN M a s t e r ( OP C ) U s e r' s M a n ua l
-
8/10/2019 Com600 4.0 Dnp 3.0 Lanwan Master Opc Usg 756566 Enf
37/78
C o nt r ol l ab l e i n te g er s t at u s ( I NC )3.4.8.12.
T ab l e 3 . 4 .8 . 1 2- 1 C o n fi g u ra b l e I N C p r op e r ti e s
Descr iptionVa l ue o r V al u e r a ng e / D e fa u ltP r o p e rt y / P a r a -meter
Basic
C o mm o n d a ta c l as s a c co r di n g t o I E C
61850
INCC o mm o n D a ta
Class
Addr esses
Control index.-1 t o 6 55 35
D e fa u lt : - 1
Control Index
Index.-1 t o 6 55 35
D e fa u lt : - 1
Index
D a ta C l a s s S p e-
cific
O b j e ct n u m be r f o r c o n t r o l .D e f a ul t : A n a l o g c o n t ro l o u t p utblock (41).
Control Object
Va r i a t io n f o r c o n t r o l .0 t o 6 55 35
D e fa u lt : 2
Control Variation
O b j e ct n u m be r f o r i n d i c at i o n .Analog input (30, 32)
Analog output (40)
D ef au lt : A na lo g i np ut ( 30 , 3 2)
I n d i ca t i o n O b j e ct
S c a le a n d U ni t
S c al e u s ed w i th t h is t y pe .D e f a ul t : N o n eScale
I nt eg er s ta tu s ( IN S)3.4.8.13.
T ab l e 3 . 4 .8 . 1 3- 1 C o n fi g u ra b l e I N S p r o pe r t ie s
Descr iptionVa l ue o r V al u e r a ng e / D e fa u ltP r o p e rt y / P a r a -
meter
Basic
C o mm o n d a ta c l as s a c co r di n g t o I E C
61850.
INSC o mm o n D a ta
Class
Addr esses
Index.-1 t o 6 55 35
D e fa u lt : - 1
Index
37
G r i d A u to ma ti o n C o n tro l l e r C O M 60 0 4 . 01MRS756566
D N P 3 . 0 L A N / WA N M a s t er ( O P C ) U s er ' s M a nu a l
-
8/10/2019 Com600 4.0 Dnp 3.0 Lanwan Master Opc Usg 756566 Enf
38/78
Descr iptionV al u e o r Va l ue r a ng e / D e fa u ltP r o p er t y / P a r a -
meter
D a ta C l a s s S p e-
cific
O b j e ct n u m b er f o r i n d i ca t i o n .Analog input (30, 32)
Analog output (40)
D ef au lt : A na lo g i np ut ( 30 , 3 2)
I n d i ca t i o n O b j e ct
S c al e a n d U ni t
S ca le u se d w it h t hi s t yp e.D e fa u lt : N o neScale
Integer controlled step position information (ISC)3.4.8.14.
T ab l e 3 . 4 .8 . 1 4- 1 C o n fi g u r ab l e I S C p r op e r ti e s
Descr iptionV al u e o r Va l ue r a ng e / D e fa u ltP r o p er t y / P a r a -
meter
Basic
C o mm on d a ta c l as s a c co r di n g t o I E C
61850.
ISCC o mm o n D a ta
Class
Addr esses
Control index.- 1 t o 6 55 35
D e fa u lt : - 1
Control Index
I n d i ca t i o n i n d e x.- 1 t o 6 55 35
D e fa u lt : - 1
I n d i ca t i o n I n d e x
D a ta C l a s s S p e-
cific
O b j e ct n u m b er f o r c o n t r o l .D e f a ul t : A n a l og c o n t ro l o u t p u t
block (41).
Control Object
Va r i a t io n f o r c o n t ro l .0 t o 6 553 5
D e fa u lt : 2
Control Variation
O b j e ct n u m b er f o r i n d i ca t i o n .Analog input (30, 32)
Analog output (40)
D ef au lt : A na lo g i np ut ( 30 , 3 2)
I n d i ca t i o n O b j e ct
S c al e a n d U ni t
S ca le u se d w it h t hi s t yp e.D e fa u lt : N o neScale
38
1MRS756566G r i d A u to ma ti o n C o n tro l l e r C O M 6 00 4 . 0
D N P 3 . 0 L A N /W AN M a s t e r ( OP C ) U s e r' s M a n ua l
-
8/10/2019 Com600 4.0 Dnp 3.0 Lanwan Master Opc Usg 756566 Enf
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L og ic al N od e N am e P la te ( LP L)3.4.8.15.
T ab l e 3 . 4 .8 . 1 5- 1 C o n fi g u ra b l e L P L p ro p e rt i e s
Descr iptionVa l ue o r V al u e r a ng e / D e fa u ltP r o p e rt y / P a r a -meter
Basic
6 1 8 5 0 D a t a O b j e ctLPL6 1 8 5 0 D a t a O b j e ct
D a ta C l a s s S p e-
cific
Te x t s t r i ng d e s cr i b i n g s e r i al n u m be r.User defined.
D e f a ul t : A B B 1 23 4 5 6 78 9
Serial number
Te x t s t ri n g d e sc r ib i ng s o ft w ar e r e vi s io n .D e fa u lt : 1 . 0S o f t wa r e R e v is i o n
Te x t s t ri n g d e sc r ib i ng v e nd o r.ABBVendor
M e a su r e d v a l u e (M V )3.4.8.16.
T ab l e 3 . 4 .8 . 1 6- 1 C o n fi g u ra b l e M V p r op e r ti e s
Descr iptionVa l ue o r V al u e r a ng e / D e fa u ltP r o p e rt y / P a r a -
meter
Basic
C o mm o n d a ta c l as s a c co r di n g t o I E C
61850.
MVC o mm o n D a ta
Class
Addr esses
I n d i ca t i o n i n d e x.-1 t o 6 55 35
D e fa u lt : - 1
Index
Sub-Type
M V S u b- t yp eSimpleSubtype
D a ta C l a s s S p e-
cific
Data object number for indication.Analog input (30, 32)
Analog output (40)
D ef au lt : A na lo g i np ut ( 30 , 3 2)
I n d i ca t i o n O b j e ct
S c a le a n d U ni t
S p e ci f i e s t h e m u l t ip l i e r f o r c u r r en t S I u n i t .D e f a ul t : D e k aMultiplier
S p e ci f i e s t he n u m b er o f d e c i ma l s s h ow n
i n H SI . ( 0. .9 )
D e fa u lt : 0P h a s e N u m be r of
Decimals
S ca le u se d w it h t hi s t y peD e f a ul t : N o n eScale
39
G r i d A u to ma ti o n C o n tro l l e r C O M 60 0 4 . 01MRS756566
D N P 3 . 0 L A N / WA N M a s t er ( O P C ) U s er ' s M a nu a l
-
8/10/2019 Com600 4.0 Dnp 3.0 Lanwan Master Opc Usg 756566 Enf
40/78
Descr iptionV al u e o r Va l ue r a ng e / D e fa u ltP r o p er t y / P a r a -
meter
S I u n it f o r m e as u re m en t a s d e sc r ib e d i n
IEC61850
D e f a ul t : D i m en s i o nl e s sUnit
L i m i t Va l u e S u p e r-
vision
Maximum value for measurementMax
Minimum value for measurementMin
T ab l e 3 . 4 .8 . 1 6- 2 A d d it i o na l c o nf i g ur a b le p r o pe r t ie s f o r S u b -T yp e M V L i m i t C h e ck
Descr iptionV al u e o r Va l ue r a ng e / D e fa u ltP r o p er t y / P a r a -
meter
MVSubTypeDescriptionM V L im it C he ckSub-Type
L i m i t Va l u e S u p e r-vision
H i gh l i mi t f o r me a su r em e nt . E ve n t i s cr e -a t ed w h en v a lu e c r os se s t h e l i mi t .
D e fa u lt : 0High
H i gh - hi g h l i mi t f o r m e a su r em e nt . E v en t i s
c re at ed w he n v al ue c ro ss es t he l im it .
D e fa u lt : 0High-High
L o w l i m i t f o r m e a su r e me n t . E v e nt i s c r e -
a t ed w h en v a lu e c r os se s t h e l i mi t .
D e fa u lt : 0Low
L o w -l o w l i m i t f o r m e a su r e me n t . E v e nt i s
c re at ed w he n v al ue c ro ss es t he l im it .
D e fa u lt : 0Low-Low
C o nt r ol l ab l e s i ng l e p o in t ( S PC )3.4.8.17.
T ab l e 3 . 4 .8 . 1 7- 1 C o n fi g u r ab l e S P C p ro p er t i es f o r OP C c l ie n t
Descr iptionV al u e o r Va l ue r a ng e / D e fa u ltP r o p er t y / P a r a -
meter
Basic
C o mm on d a ta c l as s a c co r di n g t o I E C
61850.
SPCC o mm o n D a ta
Class
Addr esses
Control index.0...65535
D e fa u lt : 0
Control Index
I n d i ca t i o n i n d e x.0...65535
D e fa u lt : 0
I n d i ca t i o n I n d e x
Common
40
1MRS756566G r i d A u to ma ti o n C o n tro l l e r C O M 6 00 4 . 0
D N P 3 . 0 L A N /W AN M a s t e r ( OP C ) U s e r' s M a n ua l
-
8/10/2019 Com600 4.0 Dnp 3.0 Lanwan Master Opc Usg 756566 Enf
41/78
Descr iptionVa l ue o r V al u e r a ng e / D e fa u ltP r o p e rt y / P a r a -
meter
C la ss o f A SD U. D at a s en t f ro m t he s la ve
t o t he m as te r c an b e a ss ig ne d t o f ou r c l as se s . D a ta i n c l as s 1 i s s e nt w i th h i gh e r
p r io r it y t h an d a ta in c l as s 3 .
Class 0...3
D e f a ul t : C l a s s 0
Class
M a xi m um u p d at e r a te o f s i gn a l s ta t e
c h an g es b e tw e en t h e O PC s e rv e r a nd
c li en t i n m il li se co nd s. 0 m ea ns t ha t t he
s e r ve r se n d s a l l th e c h a n ge s to t h e c l i e nt .
0...65535
D e fa u lt : 0
U p da t e R a te
D a ta C l a s s S p e-
cific
O b j e ct n u m be r f o r c o n t r o l .D e f a ul t : B i n a ry c o n t r o l o u t p u t
block (12).
Control Object
O b j e ct n u m be r f o r i n d i c at i o n .B i na r y i n pu t ( 1 , 2 )
B i n a ry o u tp u t ( 1 0 )
D e fa u lt : B i na r y i n pu t ( 1 , 2 )
I n d i ca t i o n O b j e ct
D ef in es i f a ll ch an ge s i n v al ue a re s en t t o
t h e m a st e r.
True
False
D e f a ul t : F a l s e
S e n d A l l U p d a te s
D ef in es i f a va lu e i s s en t a s d ou bl e p oi nt .True
False
D e f a ul t : F a l s e
S e n d A s D o u b le
Point
De fi ne s i f t he va lu e o f a me ssa ge i sinverse.
True
False
D e f a ul t : F a l s e
S e n d A s In v e rs eValue
S pe ci f ie s th e t yp e o f t he t im es ta mp a
m e ss a ge i s se n t w i th .
S e n d a s s t a t i c d at a ( a l w a ys
w i t h ou t t i m e )
E ve n t w i th o ut t i me
E ve nt w it h t im e
E ve nt w it h r el at i ve t im e ( va li dfor binary inputs only)
D ef au lt : E ve nt w it h t i me
Ti me A nd Ty pe
Variation
41
G r i d A u to ma ti o n C o n tro l l e r C O M 60 0 4 . 01MRS756566
D N P 3 . 0 L A N / WA N M a s t er ( O P C ) U s er ' s M a nu a l
-
8/10/2019 Com600 4.0 Dnp 3.0 Lanwan Master Opc Usg 756566 Enf
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S i ng l e p o in t s t at u s ( S PS )3.4.8.18.
T ab l e 3 . 4 .8 . 1 8- 1 C o n fi g u r ab l e S P S p r o pe r t ie s f o r O P C c l i en t
Descr iptionV al u e o r Va l ue r a ng e / D e fa u ltP r o p er t y / P a r a -meter
Basic
C o mm on d a ta c l as s a c co r di n g t o I E C
61850
SPSC o mm o n D a ta
Class
Addr esses
I n d i ca t i o n i n d e x.0...65535
D e fa u lt : 0
I n d i ca t i o n I n d e x
Common
C la ss o f A SD U. D at a s en t f ro m t he s la vet o t he m as te r c an b e a ss ig ne d t o f ou r
c la ss es . D at a i n c la ss 1 i s s en t w it h h ig he r
p r io r it y t h an d a ta i n c l as s 3 .
Class 0...3
D e f a ul t : C l a ss 0
Class
M ax i mu m u p da t e r a te o f s i gn a l s ta t e
c h a n ge s b e tw e e n t h e O P C se r v e r a n d
c li en t i n m il li se co nd s. 0 m ea ns t ha t t he
s e rv e r s en d s a ll t h e c h an g es t o t h e c l ie n t.
0...65535
D e fa u lt : 0
U p da t e R a te
D a ta C l a s s S p e-
cific
O b j e ct n u m b er f o r i n d i ca t i o n .B i na r y i n pu t ( 1 , 2 )
B i n a ry o u tp u t ( 1 0 )
D e fa u lt : B i na r y i n pu t ( 1 , 2 )
I n d i ca t i o n O b j e ct
D ef in es if a l l c ha ng es i n v al ue a re s en t t ot h e m a s te r.
True
False
D e f a ul t : F a l s e
S e n d A l l U p d a te s
D e fi n es i f a v al u e i s se n t a s do u bl e p o in t .True
False
D e f a ul t : F a l s e
S e nd A s D o ub l e
Point
D ef in es if t he v al ue o f a me ss ag e i s
inverse.
True
False
D e f a ul t : F a l s e
S e n d A s I n v e rs e
Value
42
1MRS756566G r i d A u to ma ti o n C o n tro l l e r C O M 6 00 4 . 0
D N P 3 . 0 L A N /W AN M a s t e r ( OP C ) U s e r' s M a n ua l
-
8/10/2019 Com600 4.0 Dnp 3.0 Lanwan Master Opc Usg 756566 Enf
43/78
-
8/10/2019 Com600 4.0 Dnp 3.0 Lanwan Master Opc Usg 756566 Enf
44/78
-
8/10/2019 Com600 4.0 Dnp 3.0 Lanwan Master Opc Usg 756566 Enf
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Descr iptionV al u e o r Va l ue r a ng e / D e fa u ltP r o p er t y / P a r a -
meter
R e s L i m i t V a lu e
Super vision
H i gh l i mi t f o r me a su r em e nt . E ve n t i s cr e -a t ed w h en v a lu e c r os se s t h e l i mi t .
D e fa u lt : 0High
H i gh - hi g h l i mi t f o r m e a su r em e nt . E v en t i s
c re at ed w he n v al ue c ro ss es t he l im it .
D e fa u lt : 0High-High
L o w l i m i t f o r m e a su r e me n t . E v e nt i s c r e -
a t ed w h en v a lu e c r os se s t h e l i mi t .
D e fa u lt : 0Low
L o w -l o w l i m i t f o r m e a su r e me n t . E v e nt i s
c re at ed w he n v al ue c ro ss es t he l im it .
D e fa u lt : 0Low-Low
Event definitions3.4.9.
For information on event definitions, refer to COM600 Users Manual.
Using scales3.4.10.
For information on using scales, refer to COM600 Users Manual.
To p i c G e n e ra to r 3.5.
When the data objects have been configured with the DNP data objects, use the DNP
Topic Generatorfunction to specify how the data is requested from the DNP device.
To create a topic:
1. Click the Communication tab on the left.
2. Right-click the DNP IED and select the DNP Topic Generatorfunction. IED
selected for the first time has no event and data poll topics. DNP Topic Generator
tool generates a default event poll and two data poll topics. The event poll topic
specifies the unsolicited response mode. Data poll topics specify cyclical data poll
methods. You can add, modify, or delete these default topics depending on the
specific DNP device connected.
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A ddTopic_D3M. png
Figure
3.5-2
Add Event Poll Topic
To add a data poll topic, specify the polling interval in hundreds of millisecond, data
object type and variation, and lower and upper limit of the index range. If you want to
poll 32-bit analog without flag every 1 s, you may set up as shown in the Add Topic
dialog.
A dd_Dat a_P oll_Topic_3M. png
Figure
3.5-3
Add Data Poll Topic
To modify an existing topic:
1. In Topic Generator Tool, change settings by entering a value or selecting it from
the drop-down list.
2. Click the Applybutton to save the topic to the configuration.
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Modif y_an_E xist ing_Topic_D3M. png
Figure3.5-4Modify an Existing Topic
To delete a topic:
1. In Topic Generator Tool, select whole row of the topic you want to delete.
2. Press the Delete key from the keyboard to delete the topic.
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Delet e_a_Topic_D3M. png
Figure3.5-5Delete a Topic
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Operation4.
A b ou t t h is s e ct i on4.1.
This section describes the basic operation procedures you can carry out after the server
has been configured.
After reading this section, you can, for example, monitor and control network connections.
Monitoring and controling is done by using the Online diagnostics function in SAB600.
A c ti va ti n g C O M 60 0 w i th n e w c o n fig u ra tio n s4.2.
For information about activating COM600 with new configuration, see COM600 Users
Manual.
S e rv e r d i ag n os t ic s4.3.
Diagnostic events can be monitored and controlled using the Diagnostic AE Client
function. Click Refreshto update the status information. To be able to receive events
from a certain device, diagnostic events must be enabled for this respective device.
You have the following alternatives:
View version information
Reset the OPC Server View the event log file
Clear the log file
dnp_serial_opc_client _ae. png
Figure4.3-1DNP OPC Client Diagnostic AE client
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D NP c ha nn el d ia gn os t ic s4.4.
The DNP 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.
To monitor and control DNP 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 Diagnostic
counters, click Reset counters.
You can take a DNP cha