abb switchsync pwc600version 1.0–iec 61850 micsfile/...iec_61850_mics.pdf · abb ab doc. no....

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Copyright 2013 ABB. All rights reserved. Type des. Part no. Prep. Anoop A Parapurath 2013-08-16 Doc. kind Declaration of Conformity No. of p. Appr. Michael Stanek 2013-08-16 Title Switchsync PWC600 version 1.0 - IEC 61850 MICS 25 Resp. dept IDC/PT Approved ABB AB Doc. no. Lang. Rev. ind. Page 1MRK511297-WEN en d1 1 FILE: 1MRK511297-WEN_PWC600_version_1.0.0_IEC_61850_MICS; SAVEDATE: 2013-08-16 11:42; TEMPLATE: Techn_Doc_Stand_P.dot C; SKELETON: 1MRK3-475 en ABB Switchsync PWC600 version 1.0 – IEC 61850 MICS (Model Implementation Conformance Statement) Template version 0.1 Date: April 24, 2008 UCA International Users Group Testing Sub Committee

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Page 1: ABB Switchsync PWC600version 1.0–IEC 61850 MICSfile/...IEC_61850_MICS.pdf · ABB AB Doc. no. Lang. Rev. ind. Page 1MRK511297-WEN en d1 2 ABB PWC600 version 1.0 –IEC 61850 MICS.....1

Copyright 2013 ABB. All rights reserved.

Type des. Part no.

Prep. Anoop A Parapurath 2013-08-16 Doc. kind Declaration of Conformity No. of p.

Appr. Michael Stanek 2013-08-16 Title Switchsync PWC600 version 1.0 - IEC 61850 MICS

25Resp. dept IDC/PT Approved

ABB AB

Doc. no. Lang. Rev. ind. Page

1MRK511297-WEN en d1 1

FILE: 1MRK511297-WEN_PWC600_version_1.0.0_IEC_61850_MICS; SAVEDATE: 2013-08-16 11:42; TEMPLATE: Techn_Doc_Stand_P.dot C; SKELETON: 1MRK3-475 en

ABB Switchsync PWC600 version 1.0 – IEC 61850 MICS

(Model Implementation Conformance Statement)

Template version 0.1

Date: April 24, 2008

UCA International Users Group

Testing Sub Committee

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ABB PWC600 version 1.0 – IEC 61850 MICS ...................................................... 1

1 Introduction................................................................................................... 3

1.1 Scope................................................................................................ 31.2 Denominations .................................................................................. 31.3 Related documents............................................................................ 3

2 Logical Nodes List ........................................................................................ 4

3 Logical Node Extensions.............................................................................. 6

3.1 New Logical Nodes............................................................................ 63.1.1 IB16FCVB ................................................................................ 63.1.2 B16IFCVI.................................................................................. 73.1.3 ACBMSCBR............................................................................. 73.1.4 RCHLCCH Revision 1 .............................................................. 9

3.2 Extended Logical Nodes.................................................................... 93.2.1 LLN0 ...................................................................................... 103.2.2 SECLLN0 Revision 1.............................................................. 113.2.3 SSLLN0.................................................................................. 113.2.4 LPHD Revision 5 .................................................................... 123.2.5 SSCPOW ............................................................................... 123.2.6 CNTGGIO Revision 1 ............................................................. 133.2.7 DPGGIO Revision 1 ............................................................... 133.2.8 MVGGIO Revision 1............................................................... 143.2.9 SPGGIO Revision 1 ............................................................... 143.2.10 SP16GGIO Revision 2............................................................ 153.2.11 VSGGIO Revision 1 ............................................................... 163.2.12 AGSAL Revision 1.................................................................. 163.2.13 CVMMXN ............................................................................... 173.2.14 CMMXU Revision 1 ................................................................ 183.2.15 VMMXU Revision 1 ................................................................ 183.2.16 VNMMXU Revision 1.............................................................. 193.2.17 CMSQI Revision 2.................................................................. 193.2.18 VMSQI Revision 2 .................................................................. 203.2.19 DRPRDRE ............................................................................. 203.2.20 SSXCBR ................................................................................ 21

4 Common Data Class Extensions ............................................................... 22

5 Enum types Extensions.............................................................................. 23

6 Control Block Extensions........................................................................... 24

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1 Introduction

ABB IED Switchsync PWC600 version 1.0 is based on ABB IED 650 series version 1.3. This model implementation conformance statement is applicable for ABB IED Switchsync PWC600 version 1.0.

This MICS document specifies the modelling extensions compared to IEC 61850 edition 1Clause 2 contains the list of implemented logical nodes. Clause 3 describes the new and extended logical nodes. Clause 4 describes the new and extended common data classes (if any).Clause 5 describes the new and extended enum types. Clause 6 describes any other extensions.

1.1 Scope

The purpose of this document is to serve as the MICS, Modelling Implementation Conformance Statement according to IEC 61850-10. It covers the content of the product ABB IED Switchsync PWC600 version 1.0. The document contains the description and layout of the Logical Node types, the vendor specific Logical Nodes and the vendor specific additions to the standard Logical Nodes. The details of the respective DATA types are described in the ICD file. There is no vendor specific Common Data Classes defined in these products. Each Logical Node type represents a function or a part of a function.

1.2 Denominations

Although not required nor defined in IEC 61850, the ABB IED 650 Series family supports version handling of the Logical Node types. The reason is that it shall be easy to distinguish between the LN types used in different version of the products based upon the same platform and the version of the platform. The revisions of LN type higher than 0 have Revision<No> concatenated with the LN type name.DATA types are not version handled.

1.3 Related documents

Document Id Title

IEC 61850-5 (2003) Communication Networks and Systems in Substations – Part 5: Communication requirements for functions and device models

IEC 61850-6 (2003) Communication Networks and Systems in Substations Part 6: Configuration description language for communication in electrical substations related to IEDs

IEC 61850-7-1 (2003) Communication Networks and Systems in Substations Part 7-1: Basic communication structure for substation and feeder equipment – Principles and models

IEC 61850-7-2 (2003) Communication Networks and Systems in Substations Part 7-2: Basic communication structure for substations and feeder equipment – Abstract communication service interface (ACSI)

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Document Id Title

IEC 61850-7-3 (2003) Communication Networks and Systems in Substations Part 7-3: Basic communication structure for substation and feeder equipment – Common data classes

IEC 61850-7-4 (2003) Communication Networks and Systems in Substations Part 7-4: Basic communication structure for substation and feeder equipment – Compatible logical node classes and data classes

IEC 61850-8-1 (2003) Communication Networks and Systems in Substations Part 8-1: Specific communication service mapping (SCSM) –Mapping to MMS(ISO/IEC 9506 Part 1 and Part 2)

IEC 61850-10 (2005) Communication Networks and Systems in Substations Part 10: Conformance testing

ABB 1MRG010658 IED 650 series ver 1.3 - IEC 61850 PIXIT Protocol Extra Information

ABB 1MRG010660 IED 650 series ver 1.3 - IEC 61850 PICS Protocol Information Conformance Statement

ABB 1MRG010659 IED 650 series ver 1.3 - IEC 61850 TICS Tissue Information Conformance Statement

Since Switchsync PWC600 version 1.0 is based on ABB IED 650 series version 1.3, PIXIT, PICS and TICS of ABB IED 650 version 1.3 are applicable to Switchsync PWC600 version 1.0 also.

2 Logical Nodes List

The following table contains the list of logical nodes implemented in the device:

C: Logical Nodes for control

CPOW (Point-on-wave switching)

F: Logical Nodes for conversion functions

FCVB (Integer to Boolean converter)

FCVI (Boolean to integer converter)

G: Logical Nodes for generic references

GGIO (Generic process I/O)

GSAL (Generic security application)

L: System Logical Nodes

LCCH (Physical communication channel supervision)

LPHD (Physical device information)

LLN0 (Logical node zero)

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R: Logical nodes for protection related functions

RDRE (Disturbance recorder)

M: Logical Nodes for metering and measurement

MMXN (Non phased related measurement)

MMXU (Measurement)

MSQI (Sequence and imbalance)

S: Logical Nodes for sensors and monitoring

SCBR (Circuit breaker monitoring)

X: Logical Nodes for switchgear

XCBR (Circuit breaker)

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3 Logical Node Extensions

The following table use

M : Data is mandatory in IEC-61850-7-4.

O: Data is optional in IEC-61850-7-4 and is used in the device.

E: Data is an extension to IEC-61850-7-4.

C: Data is conditional in IEC-61850-7-4.

3.1 New Logical Nodes

New logical nodes have the lnNs attribute in the Name plate. The value of lnNs is $, which in this case is a reference to the MICS document.

The ABB IED650 Series platform contains the following new functions:

LN Class Prefix LN Type Description

FCVB IB16 IB16FCVB Integer to Boolean converter

FCVI B16I B16IFCVI Boolean to integer converter

SCBR ACBM SCBR Advanced CB operation and monitoring

LCCH RCH RCHLCCHPhysical communication channel supervision, redundant channels

3.1.1 IB16FCVB

FCVB class

Attribute

Name

DATA

TypeExplanation

M/O/E/

CRemarks

FCVB Integer to bool converter

Data

Common Logical Node Information

Mod ABB_a_dINC Mode M

Beh ABB_a_dINS Behaviour M

Health ABB_c_dINS Health M

NamPlt ABB_b_dLPL Name plate M lnNs=$ refers to the MICS

Status Information

ISCSO ABB_b_dINC Integer status controllable status output

M Controllable

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3.1.2 B16IFCVI

FCVI class

Attribute

Name

DATA

TypeExplanation

M/O/E/

CRemarks

FCVI Bool16 to integer converter

Data

Common Logical Node Information

Beh ABB_a_dINS Behaviour M

Health ABB_c_dINS Health M

Mod ABB_a_dINC Mode M

NamPlt ABB_b_dLPL Name plate M lnNs=$ refers to the MICS

Status Information

OutInt ABB_b_dINS Integer output M

3.1.3 ACBMSCBR

SCBR class

Attribute

Name

DATA

TypeExplanation

M/O/E

/CRemarks

SCBRAdvanced CB operation and

monitoring

Data

Common Logical Node Information

Mod ABB_a_dINC ModeM

Beh ABB_a_dINS BehaviourM

Health ABB_c_dINS HealthM

NamPlt ABB_a_dLPL Name plateM lnNs=$ refers to the MICS

MechHealth ABB_v1_dINS Mechanical behaviour alarmE

OpTmAlm ABB_v1_dSPS Switch operating time

exceeded

E

OpCntAlm ABB_v1_dSPS Number of operations

(modelled in XCBR) has

exceeded the alarm

E

OpCntWrn ABB_v1_dSPS Number of operations

(modelled in XCBR) exceeds

the warning limit

E

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MaxRkRiAlm ABB_v1_dSPS Maximum number of re-

ignitions or re-strikes detected

E

UnstOpChr ABB_v1_dSPS Unstable CB operating

characteristics, as determined

from detected switching

instants of recent operation

E

CntrPos ABB_v1_dSPS Contradicting mechanical and

electrical CB position

indications

E

SwA ABB_v1_dMV Current that was interrupted

during last open operation

E

AuxSwTmOp

n

ABB_v1_dMV Auxiliary switches timing openE

AuxSwTmCls ABB_v1_dMV Auxiliary switches timing

close

E

RctTmOpn ABB_v1_dMV Reaction time measurement

open

E

RctTmCls ABB_v1_dMV Reaction time measurement

close

E

OpSpdOpn ABB_v1_dMV Operation speed openE

OpSpdCls ABB_v1_dMV Operation speed closeE

OpTmOpn ABB_v1_dMV Operation time openE

OpTmCls ABB_v1_dMV Operation time closeE

Tmp ABB_v1_dMV Temperature e.g. inside drive

mechanism

E

RsUnst ABB_v1_dSPC Reset input to exit from CB

unstable state

E Controllable

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3.1.4 RCHLCCH Revision 1

LCCH class

Attribute

Name

DATA

TypeExplanation

M/O/E

/CRemarks

LCCH

Physical communication

channel supervision,

redundant channels

Data

Common Logical Node Information

Mod ABB_a_dINC Mode M

Beh ABB_a_dINS Behaviour M

Health ABB_c_dINS Health M

NamPlt ABB_b_dLPL Name plate M lnNs=$ refers to the MICS

Status Information

ChLiv ABB_a_dSPS Physical channel status; true, if channel receives telegrams within a specified time interval

M

RedChLiv ABB_a_dSPS Physical channel status of redundant channelYe

C

FerCh ABB_b_dINS Frame error rate on this channel

O

RedFerCh ABB_b_dINS Frame error rate on redundant channel

O

3.2 Extended Logical Nodes

The following logical nodes are included in the product. All extra data that has been added, is marked as

“E” (Extended), these data contains the “dataNs” attribute with a reference the MICS.

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LN Class Prefix

(default)

LN Type Description

LLN0

LLN0 General LN0 for LD0

SEC SECLLN0 Logical node 0 for logical device SECAUD

SS SSLLN0 Logical node for logical device SS

LPHD LPHD Physical device information

CPOW SS SSCPOW Point-on-wave switching

GGIO

CNT CNTGGIO Generic counters

DP DPGGIO Generic double point status

MV MVGGIO Generic measured value

SP SPGGIO Generic single point status

SP16 SP16GGIO Generic single point status, 16 outputs

SPC8 SPC8GGIO Single point command, 8 SPC’s

VS VSGGIO Versatile Switch

GSAL A AGSAL Security

MMXN CV CVMMXN Service value reading of power

MMXU

C CMMXU Current monitoring

V VMMXU Voltage monitoring

VN VNMMXU Voltage monitoring Ph-Gnd

MSQIC CMSQI Current monitoring, sequence values

V VMSQI Voltage monitoring, sequence values

RDRE DRP DRPRDRE Disturbance recorder

XCBR S SXCBR Circuit breaker

3.2.1 LLN0

LLN0 class

Attribute

Name

DATA

TypeExplanation

M/O/E

/CRemarks

LLN0 Logical node 0

Data

Common Logical Node Information

Mod ABB_a_dINC Mode M

Beh ABB_a_dINS Behaviour M

Health ABB_c_dINS Health M

NamPlt ABB_ln0_dLPL Name plate M

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3.2.2 SECLLN0 Revision 1

LLN0 class

Attribute

Name

DATA

TypeExplanation

M/O/E

/CRemarks

LLN0Logical node 0 for logical

device SECAUD

Data

Common Logical Node Information

Mod ABB_c_dINC Mode M

Beh ABB_a_dINS Behaviour M

Health ABB_c_dINS Health M

NamPlt ABB_ln0_dLPL Name plate M

3.2.3 SSLLN0

LLN0 class

Attribute

Name

DATA

TypeExplanation

M/O/E

/CRemarks

LLN0Logical node 0 for logical

device SS

Data

Common Logical Node Information

Mod ABB_a_dINC Mode M

Beh ABB_a_dINS Behaviour M

Health ABB_b_dINS Health M

NamPlt ABB_ln0_dLPL Name plate M

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3.2.4 LPHD Revision 5

LPHD class

Attribute

Name

DATA

TypeExplanation

M/O/E

/CRemarks

LPHD Physical device information

Data

Common Logical Node Information

PhyNam ABB_b_dDPL Physical device name plate M

PhyHealth ABB_c_dINS Physical device health M

Status Information

Proxy ABB_b_dSPS Indicates if this LN is a proxy

M

3.2.5 SSCPOW

CPOW class

Attribute

Name

DATA

TypeExplanation

M/O/E

/CRemarks

CPOW Point-on-wave switching Logical device is SS

Data

Common Logical Node Information

Mod ABB_c_dINC Mode M

Beh ABB_a_dINS Behaviour M

Health ABB_c_dINS Health M

NamPlt ABB_a_dLPL Name plate M

Status Information

TmExc ABB_a_dSPS Maximum allowed time exceeded

O

StrPOW ABB_a_dSPS CPOW started O

OpOpn ABB_a_dACT Open switch O

OpCls ABB_a_dACT Close switch O

UnCtlSw ABB_v1_dSPS Uncontrolled switching operation

E

LosRefSig ABB_v1_dSPS Loss of reference signal E

LosCSig ABB_v1_dSPS Loss of compensation signal or sensor fault

E

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3.2.6 CNTGGIO Revision 1

GGIO class

Attribute

Name

DATA

TypeExplanation

M/O/E

/CRemarks

GGIO Event counters

Data

Common Logical Node Information

Mod ABB_a_dINC Mode M

Beh ABB_a_dINS Behaviour M

Health ABB_c_dINS Health M

NamPlt ABB_a_dLPL Name plate M

Status Information

Cnt1 ABB_v1_dBCR Output of counter 1 E Data type for counter value is INT32 (INT128 is not supported)

Cnt2 ABB_v1_dBCR Output of counter 2 E Data type for counter value is INT32 (INT128 is not supported)

Cnt3 ABB_v1_dBCR Output of counter 3 E Data type for counter value is INT32 (INT128 is not supported)

Cnt4 ABB_v1_dBCR Output of counter 4 E Data type for counter value is INT32 (INT128 is not supported)

Cnt5 ABB_v1_dBCR Output of counter 5 E Data type for counter value is INT32 (INT128 is not supported)

Cnt6 ABB_v1_dBCR Output of counter 6 E Data type for counter value is INT32 (INT128 is not supported)

RsCnt ABB_v1_dSPC Reset counters E Controllable

3.2.7 DPGGIO Revision 1

GGIO class

Attribute

Name

DATA

TypeExplanation

M/O/E

/CRemarks

GGIO Generic double point status

Data

Common Logical Node Information

Mod ABB_a_dINC Mode M

Beh ABB_a_dINS Behaviour M

Health ABB_c_dINS Health M

NamPlt ABB_a_dLPL Name plate M

Status Information

DPCSO ABB_b_dDPC General position indication O Controllable

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3.2.8 MVGGIO Revision 1

GGIO class

Attribute

Name

DATA

TypeExplanation

M/O/E

/CRemarks

GGIO Generic measured value

Data

Common Logical Node Information

Mod ABB_a_dINC Mode M

Beh ABB_a_dINS Behaviour M

Health ABB_c_dINS Health M

NamPlt ABB_a_dLPL Name plate M

Status Information

AnIn ABB_a_dMV Measured value O

3.2.9 SPGGIO Revision 1

GGIO class

Attribute

Name

DATA

TypeExplanation

M/O/E

/CRemarks

GGIO Single point control

Data

Common Logical Node Information

Mod ABB_a_dINC Mode M

Beh ABB_a_dINS Behaviour M

Health ABB_c_dINS Health M

NamPlt ABB_a_dLPL Name plate M

Status Information

Ind ABB_c_dSPS Output status O

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3.2.10 SP16GGIO Revision 2

GGIO class

Attribute

Name

DATA

TypeExplanation

M/O/E

/CRemarks

GGIOGeneric single point

status, 16 outputs

Data

Common Logical Node Information

Mod ABB_a_dINC Mode M

Beh ABB_a_dINS Behaviour M

Health ABB_c_dINS Health M

NamPlt ABB_a_dLPL Name plate M

Status Information

Ind ABB_c_dSPS General indication (binary

input)

O

GrInd ABB_v1_dSPS OR of all indications 1-16 E

Ind2 ABB_c_dSPS General indication no 2 E

Ind3 ABB_c_dSPS General indication no 3 E

Ind4 ABB_c_dSPS General indication no 4 E

Ind5 ABB_c_dSPS General indication no 5 E

Ind6 ABB_c_dSPS General indication no 6 E

Ind7 ABB_c_dSPS General indication no 7 E

Ind8 ABB_c_dSPS General indication no 8 E

Ind9 ABB_c_dSPS General indication no 9 E

Ind10 ABB_c_dSPS General indication no 10 E

Ind11 ABB_c_dSPS General indication no 11 E

Ind12 ABB_c_dSPS General indication no 12 E

Ind13 ABB_c_dSPS General indication no 13 E

Ind14 ABB_c_dSPS General indication no 14 E

Ind15 ABB_c_dSPS General indication no 15 E

Ind16 ABB_c_dSPS General indication no 16 E

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3.2.11 VSGGIO Revision 1

GGIO class

Attribute

Name

DATA

TypeExplanation

M/O/E

/CRemarks

GGIO Versatile switch

Data

Common Logical Node Information

Mod ABB_a_dINC Mode M

Beh ABB_a_dINS Behaviour M

Health ABB_c_dINS Health M

NamPlt ABB_a_dLPL Name plate M

Status Information

DPCSO ABB_d_dDPC Double point controllable status output

O Controllable

3.2.12 AGSAL Revision 1

GGIO class

Attribute

Name

DATA

TypeExplanation

M/O/E

/CRemarks

GSAL SecurityLogical device is

SECAUD

Data

Common Logical Node Information

Mod ABB_a_dINC Mode M

Beh ABB_a_dINS Behaviour M

Health ABB_c_dINS Health M

NamPlt ABB_a_dLPL Name plate M

Status Information

OpCntRs ABB_f_dINC Resetable Security Violations counter

M Controllable

NumCntRs ABB_m_dINS Number of counter resets O According to Edition 2

AuthFail ABB_a_dSEC Authorisation failures M Controllable

AcsCtlFail ABB_a_dSEC Access control failures detected

M Controllable

SvcViol ABB_a_dSEC Service privilege violations M Controllable

Ina ABB_a_dSEC Inactive associations M Controllable

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3.2.13 CVMMXN

MMXN class

Attribute

Name

DATA

TypeExplanation

M/O/E

/CRemarks

MMXNService value reading of

power

Data

Common Logical Node Information

Beh ABB_a_dINS Behaviour M

Health ABB_c_dINS Health M

Mod ABB_a_dINC Mode M

NamPlt ABB_a_dLPL Name plate M

Status Information

Amp ABB_a_dMV Current I (rms) not allocated to a phase

O

Hz ABB_a_dMV Frequency O

PwrFact ABB_a_dMV Power Factor not allocated to a phase

O

Vol ABB_a_dMV Voltage V (rms) not allocated to a phase

O

VolAmp ABB_a_dMV Apparent Power (S) not allocated to a phase

O

VolAmpr ABB_a_dMV Reactive Power (Q) not allocated to a phase

O

Watt ABB_a_dMV Power (P) not allocated to a phase

O

ALd ABB_v1_dSPS Current is leading voltage E

ALg ABB_v1_dSPS Current is lagging voltage E

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3.2.14 CMMXU Revision 1

MMXU class

Attribute

Name

DATA

TypeExplanation

M/O/E

/CRemarks

MMXU Current monitoring

Data

Common Logical Node Information

Beh ABB_a_dINS Behaviour M

Health ABB_c_dINS Health M

Mod ABB_a_dINC Mode M

NamPlt ABB_a_dLPL Name plate M

Status Information

A ABB_a_dWYE Phase currents (IL1, IL2, IL3) O

3.2.15 VMMXU Revision 1

MMXU class

Attribute

Name

DATA

TypeExplanation

M/O/E

/CRemarks

MMXU Voltage monitoring

Data

Common Logical Node Information

Beh ABB_a_dINS Behaviour M

Health ABB_c_dINS Health M

Mod ABB_a_dINC Mode M

NamPlt ABB_a_dLPL Name plate M

Status Information

PPV ABB_a_dDEL Phase to phase voltages (VL1VL2, …)

O

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3.2.16 VNMMXU Revision 1

MMXU class

Attribute

Name

DATA

TypeExplanation

M/O/E

/CRemarks

MMXU Voltage monitoring Ph-Gnd

Data

Common Logical Node Information

Beh ABB_a_dINS Behaviour M

Health ABB_c_dINS Health M

Mod ABB_a_dINC Mode M

NamPlt ABB_a_dLPL Name plate M

Status Information

PhV ABB_a_dWYE Phase to ground voltages (VL1ER, …)

O

3.2.17 CMSQI Revision 2

MSQI class

Attribute

Name

DATA

TypeExplanation

M/O/E

/CRemarks

MSQICurrent monitoring,

sequence values

Data

Common Logical Node Information

Beh ABB_a_dINS Behaviour M

Health ABB_c_dINS Health M

Mod ABB_a_dINC Mode M

NamPlt ABB_a_dLPL Name plate M

Status Information

SeqA ABB_a_dSEQ Positive, Negative and Zero Sequence Current

C

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3.2.18 VMSQI Revision 2

MSQI class

Attribute

Name

DATA

TypeExplanation

M/O/E

/CRemarks

MSQIVoltage monitoring,

sequence values

Data

Common Logical Node Information

Beh ABB_a_dINS Behaviour M

Health ABB_c_dINS Health M

Mod ABB_a_dINC Mode M

NamPlt ABB_a_dLPL Name plate M

Status Information

SeqV ABB_a_dSEQ Positive, Negative and Zero Sequence Voltage

C

3.2.19 DRPRDRE

RDRE class

Attribute

Name

DATA

TypeExplanation

M/O/E

/CRemarks

RDRE Disturbance recorder

Data

Common Logical Node Information

Mod ABB_a_dINC Mode M

Beh ABB_a_dINS Behaviour M

Health ABB_c_dINS Health M

NamPlt ABB_a_dLPL Name plate M

Status Information

RcdMade ABB_a_dSPS Recording made M

FltNum ABB_b_dINS Fault Number M

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3.2.20 SSXCBR

XCBR class

Attribute

Name

DATA

TypeExplanation

M/O/E

/CRemarks

XCBR Circuit breaker Logical device is SS

Data

Common Logical Node InformationMod ABB_c_dINC Mode M

Beh ABB_a_dINS Behaviour M

Health ABB_c_dINS Health M

NamPlt ABB_a_dLPL Name plate M

Status Information

Loc ABB_a_dSPS Local operation (local means without substation automation communication, hardwired direct control)

M

OpCnt ABB_b_dINS Operation counterM

Pos ABB_b_dDPC Switch positionM Status only

BlkOpn ABB_f_dSPC Block openingM Status only

BlkCls ABB_f_dSPC Block closingM Status only

CBOpCap ABB_b_dINS Circuit breaker operating capability

M

POWCap ABB_v1_dINS Point on wave switching capability

E

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4 Common Data Class Extensions

No common data class extensions have been made.

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5 Enum types Extensions

No Enum types extensions have been made.

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6 Control Block Extensions

No Control block extensions have been made.

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REVISION

Rev. ind. Page (P) Chapt. (C)

Description Date Dept./Init.

d0 All Initial version 18June2013/IDC/INANPAR1

d1 All Updated after receiving comments from Reijo. Used the 650 Ver 1.3 as basis

11/July/2013/IDC/INANPAR1