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BSI PD IEC/TS 61850-80-4:2016

$102.76

Communication networks and systems for power utility automation – Translation from the COSEM object model (IEC 62056) to the IEC 61850 data model

Published By Publication Date Number of Pages
BSI 2016 22
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Included within the IEC 61850 power utility automation architecture are its concepts, data models, communication protocols and the mapping data exchanges on the substation network. This extends beyond just IEDs to other IEC 61850 enabled devices like meters, system applications and remote access gateways.

This part of IEC 61850, which is a technical specification, considers the requirements of power utility automation applications; i.e. the scope is limited by the use cases relevant for meter data exchange in HV/MV substations and MV/LV substations. Only use cases that require the data exchange involving a revenue meter are considered. Applications not covered by the existing standards listed in Clause 2 are out of scope.

PDF Catalog

PDF Pages PDF Title
4 CONTENTS
5 FOREWORD
7 INTRODUCTION
8 1 Scope
2 Normative references
3 Terms and definitions
9 Tables
Table 1 – IEC 62056 terminology
10 4 Data modelling hierarchy
4.1 General
Table 2 – IEC 61850 terminology
11 4.2 IEC 62056 principles
Figures
Figure 1 – Overview of relationship between data models
Figure 2 – The IEC 62056 framework
12 4.3 The data models and the application layer of IEC 62056
13 4.4 The IEC 61850 principles
5 Translation of IEC 62056 COSEM objects into IEC 61850-Logical Nodes
5.1 General translation principles
5.1.1 General
Table 3 – IEC 62056 Register Class
14 5.1.2 IEC 61850 DataTypeTemplates to IEC 62056 Common Data Types
Table 4 – Conventions
Table 5 – Data Type mapping
15 5.2 Translation tables
5.2.1 General
Table 6 – Column heading descriptions
16 5.2.2 Metering and measurement
Table 7 – Metering and measurement logical node classes
Table 8 – MMTR
17 Table 9 – MMTN
18 Table 10 – MMXU
20 Table 11 – MMXN
BSI PD IEC/TS 61850-80-4:2016
$102.76