1、 IEC TR 61850-90-6 Edition 1.0 2018-09 TECHNICAL REPORT Communication networks and systems for power utility automation Part 90-6:Use of IEC 61850 for Distribution Automation Systems IEC TR 61850-90-6:2018-09(en)colourinside THIS PUBLICATION IS COPYRIGHT PROTECTED Copyright 2018 IEC,Geneva,Switzerla
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10、r feedback on this publication or need further assistance,please contact the Customer Service Centre:salesiec.ch.IEC TR 61850-90-6 Edition 1.0 2018-09 TECHNICAL REPORT Communication networks and systems for power utility automation Part 90-6:Use of IEC 61850 for Distribution Automation Systems INTER
11、NATIONAL ELECTROTECHNICAL COMMISSION ICS 33.200 ISBN 978-2-8322-6039-5 Registered trademark of the International Electrotechnical Commission Warning!Make sure that you obtained this publication from an authorized distributor.colourinside 2 IEC TR 61850-90-6:2018 IEC 2018 CONTENTS FOREWORD.9 INTRODUC
12、TION.11 1 Scope.13 1.1 General.13 1.2 Namespace information.13 1.3 Code components.13 2 Normative references.14 3 Terms,definitions,abbreviated terms and definitions of fault types.15 3.1 Terms and definitions.16 3.2 Abbreviated terms.16 3.2.1 Proposed specifically for the data model part of the rep
13、ort.16 3.2.2 Existing abbreviations used in the original IEC 61850 data object names model.17 3.3 Definitions of fault types.29 4 Common actors.29 5 Requirements and use cases.38 5.1 General.38 5.2 Use case 1:Fault indication and report.39 5.2.1 General.39 5.2.2 Use case 1a:Generic use case Not faul
14、t type specific.39 5.2.3 Use case 1b:Overcurrent non directional Fault Localization and Indication(F1C/NC).58 5.2.4 Use case 1c:Phase to earth faults,non directional fault detection(F2).59 5.2.5 Use case 1d:Overcurrent and Phase to earth faults detection non directional(F3).59 5.2.6 Use case 1e:Over
15、current,directional and non directional,fault detection(F4).60 5.2.7 Use case 1f:Overcurrent,non directional,phase to earth faults,directional and non directional fault detection(F5).60 5.2.8 Use case 1g:Overcurrent and phase to earth faults,directional and non directional fault detection(F6).60 5.3
16、 Use case 2:FLISR based on local control.60 5.3.1 General.60 5.3.2 Use case 2a:FLISR using sectionalizers detecting fault current.60 5.3.3 Use case 2b:FLISR using sectionalizers detecting feeder voltage(SDFV).72 5.4 Use case 3:FLISR based on centralized control.89 5.4.1 General.89 5.4.2 Use case 3a:FLISR in a radial feeder based on centralized control.89 5.4.3 Use case 3b:FLISR in an open loop feeder based on centralized control.98 5.5 Use case 4:FLISR based on distributed control.104 5.5.1 Gene