Power systems management and associated information exchange - Interoperability in the long term - Part 102: CIM - IEC 61850 harmonization

IEC TS 62361-102:2018(E) outlines a technical approach for achieving effective information exchange between power system installations governed by IEC 61850 and business systems integrated with IEC CIM standard data exchanges, based on a selected specific set of use cases, but also with the goal of creating a framework that will extend successfully to other use cases in the future. This document includes proposals to ‘harmonize’ the two standards by adapting or extending existing information models and/or defining new models, where such changes will enable more effective communication. Both current and future directions of models will be considered. The report will take into account existing standards for semantics, services, protocols, system configuration language, and architecture.

General Information

Status
Published
Publication Date
18-Mar-2018
Current Stage
PPUB - Publication issued
Start Date
05-Apr-2018
Completion Date
19-Mar-2018
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IEC TS 62361-102:2018 - Power systems management and associated information exchange - Interoperability in the long term - Part 102: CIM - IEC 61850 harmonization
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IEC TS 62361-102 ®
Edition 1.0 2018-03
TECHNICAL
SPECIFICATION
colour
inside
Power systems management and associated information exchange –
Interoperability in the long term –
Part 102: CIM – IEC 61850 harmonization

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IEC TS 62361-102 ®
Edition 1.0 2018-03
TECHNICAL
SPECIFICATION
colour
inside
Power systems management and associated information exchange –

Interoperability in the long term –

Part 102: CIM – IEC 61850 harmonization

INTERNATIONAL
ELECTROTECHNICAL
COMMISSION
ICS 33.200 ISBN 978-2-8322-5454-7

– 2 – IEC TS 62361-102:2018 © IEC 2018
CONTENTS
FOREWORD . 7
INTRODUCTION . 9
1 Scope . 10
2 Normative references . 11
3 Terms, definitions and abbreviated terms . 11
3.1 Terms and definitions . 12
3.2 Abbreviated terms . 12
4 Use case summary . 13
4.1 General . 13
4.2 SCADA/EMS/DMS configuration from IEC 61850 SCL . 13
4.3 Importing SCADA/EMS/DMS requirements into IEC 61850 SCL . 14
4.3.1 General . 14
4.3.2 Recommendation for harmonization: SCL Process/Substation/Line
section . 14
4.4 SCADA commissioning use case . 14
4.5 Volt Var control use case . 15
4.6 Wide Area Monitoring, Protection and Control (WAMPAC) for transient
stability . 16
5 Mapping SCL to SCADA/EMS/DMS relevant CIM . 16
5.1 Business requirements . 16
5.2 Profiles . 17
5.3 IEC 61850 modelling principles . 17
5.3.1 Introduction . 17
5.3.2 System Configuration description Language (SCL) . 17
5.3.3 Logical Devices and Logical Nodes . 17
5.3.4 SCL sections . 18
5.4 Mapping overview . 18
5.4.1 SCL Document Types . 18
5.4.2 General mapping principles . 19
5.5 SCL Substation section mapping . 22
5.5.1 Overview . 22
5.5.2 SCL elements and CIM classes mapping . 26
5.6 Equipment types and codes . 29
5.6.1 General . 29
5.6.2 Equipment type code mapping . 29
5.6.3 Recommendation for harmonization: SCL Equipment Type codes . 31
5.6.4 Recommendation for harmonization: SCL PSRType . 33
5.6.5 Recommendation for harmonization: CIM BusbarSection and Junction . 34
5.6.6 Recommendation for harmonization: CIM Fan, Motor, Batteries and
charging systems . 34
5.7 Naming and identification mapping . 34
5.7.1 General . 34
5.7.2 Naming and identification example . 35
5.7.3 Recommendation for harmonization: SCL naming and identification . 36
5.7.4 Recommendation for harmonization: CIM naming and identification: . 36
5.8 Voltage mapping . 36
5.8.1 General . 36

5.8.2 Voltage mapping example . 37
5.8.3 Voltage level additional attributes . 37
5.9 Connectivity modelling . 37
5.9.1 SCL Connectivity (single line diagram) modelling. 37
5.9.2 Recommendation for harmonization: SCL unconnected terminals . 39
5.9.3 Connectivity and Terminal example . 39
5.9.4 Transformation of current transformer models. 42
5.10 Phase modelling . 42
5.10.1 General . 42
5.10.2 Phase mapping example . 44
5.10.3 Recommendation for harmonization: SCL Phase modeling . 47
5.10.4 Recommendation for harmonization: CIM SinglePhaseKind . 47
6 Extension syntax for drawing layout coordinates . 47
6.1 General . 47
6.2 Recommendation for harmonization: Drawing layout syntax . 47
7 Logical Node mapping . 48
7.1 Logical Node containers . 48
7.2 CIM Measurement associations . 48
7.2.1 General . 48
7.2.2 Recommendation for harmonization: CIM SCADA package . 49
7.3 Logical Node classes relevant to CIM . 50
8 Measurement mapping . 53
8.1 General . 53
8.2 CIM Measurement Types − Logical Node and Data Object mapping . 53
8.2.1 General . 53
8.2.2 Recommendation for harmonization: CIM Measurement types . 55
8.3 Measurement associations . 56
8.4 CSWI or XSWI/XCBR as source of switch position information . 56
8.5 Direction of positive flow . 56
8.5.1 General . 56
8.5.2 Recommendation for harmonization: SCL power flow direction . 57
8.5.3 Recommendation for harmonization: CIM power flow direction. 57
8.6 CIM Extensions for Distribution – Metering Model and Reading Types . 57
9 Real time data exchange mapping . 58
9.1 Measurement identification . 58
9.2 Common Data Class mapping . 58
9.3 Common Data Class mapping to IEC 60870 and CIM Measurements . 59
9.4 Common Data Class mapping to IEEE1815 and CIM. 62
9.5 Data Attribute mapping . 62
9.5.1 General . 62
9.5.2 Quality flag mapping . 63
9.5.3 Non-real time measurement attribute mapping . 64
9.5.4 Recommendation for harmonization: CIM measurement classes . 64
10 Control Model . 64
10.1 CIM Control Modelling. 64
10.1.1 General . 64
10.1.2 Recommendation for harmonization: CIM control model . 65
10.1.3 Recommendation for harmonization: CIM CONTROL TYPES . 66

– 4 – IEC TS 62361-102:2018 © IEC 2018
10.2 Automated control sequences . 66
11 Protection modelling . 66
12 Communication model . 68
13 Settings and attributes .
...

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