EN IEC 61970-302-2018 en Energy management system application program interface (EMS-API) - Part 302 Common information model (CIM) dynamics.pdf

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1、BSI Standards PublicationWB11885_BSI_StandardCovs_2013_AW.indd 1 15/05/2013 15:06Energy management system application program interface (EMS-API)Part 302: Common information model (CIM) dynamicsBS EN IEC 61970302:2018EUROPEAN STANDARD NORME EUROPENNE EUROPISCHE NORM EN IEC 61970-302 June 2018 ICS 33

2、.200 English Version Energy management system application program interface (EMS-API) - Part 302: Common information model (CIM) dynamics (IEC 61970-302:2018) Interface de programmation dapplication pour systme de gestion dnergie (EMS-API) - Partie 302: Rgimes dynamiques de modle dinformation commun

3、 (CIM) (IEC 61970-302:2018) Schnittstelle fr Anwendungsprotokolle fr Energieverwaltungssysteme (EMS-API) - Teil 302: Allgemeines Informationsmodell (CIM) Dynamik (IEC 61970-302:2018) This European Standard was approved by CENELEC on 2018-05-17. CENELEC members are bound to comply with the CEN/CENELE

4、C Internal Regulations which stipulate the conditions for giving this European Standard the status of a national standard without any alteration. Up-to-date lists and bibliographical references concerning such national standards may be obtained on application to the CEN-CENELEC Management Centre or

5、to any CENELEC member. This European Standard exists in three official versions (English, French, German). A version in any other language made by translation under the responsibility of a CENELEC member into its own language and notified to the CEN-CENELEC Management Centre has the same status as t

6、he official versions. CENELEC members are the national electrotechnical committees of Austria, Belgium, Bulgaria, Croatia, Cyprus, the Czech Republic, Denmark, Estonia, Finland, Former Yugoslav Republic of Macedonia, France, Germany, Greece, Hungary, Iceland, Ireland, Italy, Latvia, Lithuania, Luxem

7、bourg, Malta, the Netherlands, Norway, Poland, Portugal, Romania, Serbia, Slovakia, Slovenia, Spain, Sweden, Switzerland, Turkey and the United Kingdom. European Committee for Electrotechnical Standardization Comit Europen de Normalisation Electrotechnique Europisches Komitee fr Elektrotechnische No

8、rmung CEN-CENELEC Management Centre: Rue de la Science 23, B-1040 Brussels 2018 CENELEC All rights of exploitation in any form and by any means reserved worldwide for CENELEC Members. Ref. No. EN IEC 61970-302:2018 E National forewordThis British Standard is the UK implementation of EN IEC 61970302:

9、2018. It is identical to IEC 61970302:2018.The UK participation in its preparation was entrusted to Technical Committee PEL/57, Power systems management and associated information exchange.A list of organizations represented on this committee can be obtained on request to its secretary.This publicat

10、ion does not purport to include all the necessary provisions of a contract. Users are responsible for its correct application. The British Standards Institution 2018 Published by BSI Standards Limited 2018ISBN 978 0 580 94477 2ICS 33.200Compliance with a British Standard cannot confer immunity from

11、legal obligations.This British Standard was published under the authority of the Standards Policy and Strategy Committee on 30 June 2018.Amendments/corrigenda issued since publicationDate Text affectedBRITISH STANDARDBS EN IEC 61970302:2018EUROPEAN STANDARD NORME EUROPENNE EUROPISCHE NORM EN IEC 619

12、70-302 June 2018 ICS 33.200 English Version Energy management system application program interface (EMS-API) - Part 302: Common information model (CIM) dynamics (IEC 61970-302:2018) Interface de programmation dapplication pour systme de gestion dnergie (EMS-API) - Partie 302: Rgimes dynamiques de mo

13、dle dinformation commun (CIM) (IEC 61970-302:2018) Schnittstelle fr Anwendungsprotokolle fr Energieverwaltungssysteme (EMS-API) - Teil 302: Allgemeines Informationsmodell (CIM) Dynamik (IEC 61970-302:2018) This European Standard was approved by CENELEC on 2018-05-17. CENELEC members are bound to com

14、ply with the CEN/CENELEC Internal Regulations which stipulate the conditions for giving this European Standard the status of a national standard without any alteration. Up-to-date lists and bibliographical references concerning such national standards may be obtained on application to the CEN-CENELE

15、C Management Centre or to any CENELEC member. This European Standard exists in three official versions (English, French, German). A version in any other language made by translation under the responsibility of a CENELEC member into its own language and notified to the CEN-CENELEC Management Centre h

16、as the same status as the official versions. CENELEC members are the national electrotechnical committees of Austria, Belgium, Bulgaria, Croatia, Cyprus, the Czech Republic, Denmark, Estonia, Finland, Former Yugoslav Republic of Macedonia, France, Germany, Greece, Hungary, Iceland, Ireland, Italy, L

17、atvia, Lithuania, Luxembourg, Malta, the Netherlands, Norway, Poland, Portugal, Romania, Serbia, Slovakia, Slovenia, Spain, Sweden, Switzerland, Turkey and the United Kingdom. European Committee for Electrotechnical Standardization Comit Europen de Normalisation Electrotechnique Europisches Komitee

18、fr Elektrotechnische Normung CEN-CENELEC Management Centre: Rue de la Science 23, B-1040 Brussels 2018 CENELEC All rights of exploitation in any form and by any means reserved worldwide for CENELEC Members. Ref. No. EN IEC 61970-302:2018 E BS EN IEC 61970302:2018EN IEC 61970-302:2018 (E) 2 European

19、foreword The text of document 57/1954/FDIS, future edition 1 of IEC 61970-302, prepared by IEC/TC 57 “Power systems management and associated information exchange“ was submitted to the IEC-CENELEC parallel vote and approved by CENELEC as EN IEC 61970-302:2018. The following dates are fixed: latest d

20、ate by which the document has to be implemented at national level by publication of an identical national standard or by endorsement (dop) 2019-02-17 latest date by which the national standards conflicting with the document have to be withdrawn (dow) 2021-05-17 Attention is drawn to the possibility

21、that some of the elements of this document may be the subject of patent rights. CENELEC shall not be held responsible for identifying any or all such patent rights. This document has been prepared under a mandate given to CENELEC by the European Commission and the European Free Trade Association. En

22、dorsement notice The text of the International Standard IEC 61970-302:2018 was approved by CENELEC as a European Standard without any modification. In the official version, for Bibliography, the following notes have to be added for the standards indicated: IEC 61400-27-1:2015 NOTE Harmonized as EN 6

23、1400-27-1:2015 (not modified). IEC 61970-501:2006 NOTE Harmonized as EN 61970-501:2006 (not modified). BS EN IEC 61970302:2018EN IEC 61970-302:2018 (E) 3 Annex ZA (normative) Normative references to international publications with their corresponding European publications The following documents are

24、 referred to in the text in such a way that some or all of their content constitutes requirements of this document. For dated references, only the edition cited applies. For undated references, the latest edition of the referenced document (including any amendments) applies. NOTE 1 Where an Internat

25、ional Publication has been modified by common modifications, indicated by (mod), the relevant EN/HD applies. NOTE 2 Up-to-date information on the latest versions of the European Standards listed in this annex is available here: www.cenelec.eu. Publication Year Title EN/HD Year IEC 60050 series Inter

26、national electrotechnical vocabulary - - IEC 61970-301 - Energy Management System Application Program Interface (EMS-API) - Part 301: Common information model (CIM) base EN 61970-301 - IEC/TS 61970-2 - Energy management system application program interface (EMS-API) - Part 2: Glossary CLC/TS 61970-2

27、 - BS EN IEC 61970302:2018This page deliberately left blank 2 IEC 61970-302:2018 IEC 2018 CONTENTS FOREWORD . 23 INTRODUCTION . 25 1 Scope 26 2 Normative references 26 3 Terms and definitions 27 4 Document organization 29 5 Package dynamics . 30 5.1 General . 30 5.2 Package StandardInterconnections

28、. 30 5.2.1 General . 30 5.2.2 RemoteInputSignal 46 5.2.3 RemoteSignalKind enumeration . 47 5.3 Package StandardModels . 47 5.3.1 General . 47 5.3.2 DynamicsFunctionBlock . 48 5.3.3 RotatingMachineDynamics . 48 5.3.4 Package SynchronousMachineDynamics . 49 5.3.5 Package AsynchronousMachineDynamics .

29、80 5.3.6 Package TurbineGovernorDynamics 88 5.3.7 Package TurbineLoadControllerDynamics 183 5.3.8 Package MechanicalLoadDynamics . 187 5.3.9 Package ExcitationSystemDynamics 190 5.3.10 Package OverexcitationLimiterDynamics . 311 5.3.11 Package UnderexcitationLimiterDynamics . 319 5.3.12 Package Powe

30、rSystemStabilizerDynamics. 328 5.3.13 Package DiscontinuousExcitationControlDynamics 362 5.3.14 Package PFVArControllerType1Dynamics . 368 5.3.15 Package VoltageAdjusterDynamics 372 5.3.16 Package PFVArControllerType2Dynamics . 374 5.3.17 Package VoltageCompensatorDynamics 379 5.3.18 Package WindDyn

31、amics 384 5.3.19 Package LoadDynamics. 424 5.3.20 Package HVDCDynamics . 435 5.3.21 Package StaticVarCompensatorDynamics . 438 5.4 Package UserDefinedModels 440 5.4.1 General . 440 5.4.2 SynchronousMachineUserDefined . 441 5.4.3 AsynchronousMachineUserDefined 442 5.4.4 TurbineGovernorUserDefined 443

32、 5.4.5 TurbineLoadControllerUserDefined 444 5.4.6 MechanicalLoadUserDefined . 445 5.4.7 ExcitationSystemUserDefined 446 5.4.8 OverexcitationLimiterUserDefined 447 5.4.9 UnderexcitationLimiterUserDefined 448 5.4.10 PowerSystemStabilizerUserDefined . 449 5.4.11 DiscontinuousExcitationControlUserDefine

33、d 449 2 IEC 61970-302:2018 IEC 2018 CONTENTS FOREWORD . 23 INTRODUCTION . 25 1 Scope 26 2 Normative references 26 3 Terms and definitions 27 4 Document organization 29 5 Package dynamics . 30 5.1 General . 30 5.2 Package StandardInterconnections . 30 5.2.1 General . 30 5.2.2 RemoteInputSignal 46 5.2

34、.3 RemoteSignalKind enumeration . 47 5.3 Package StandardModels . 47 5.3.1 General . 47 5.3.2 DynamicsFunctionBlock . 48 5.3.3 RotatingMachineDynamics . 48 5.3.4 Package SynchronousMachineDynamics . 49 5.3.5 Package AsynchronousMachineDynamics . 80 5.3.6 Package TurbineGovernorDynamics 88 5.3.7 Pack

35、age TurbineLoadControllerDynamics 183 5.3.8 Package MechanicalLoadDynamics . 187 5.3.9 Package ExcitationSystemDynamics 190 5.3.10 Package OverexcitationLimiterDynamics . 311 5.3.11 Package UnderexcitationLimiterDynamics . 319 5.3.12 Package PowerSystemStabilizerDynamics. 328 5.3.13 Package Disconti

36、nuousExcitationControlDynamics 362 5.3.14 Package PFVArControllerType1Dynamics . 368 5.3.15 Package VoltageAdjusterDynamics 372 5.3.16 Package PFVArControllerType2Dynamics . 374 5.3.17 Package VoltageCompensatorDynamics 379 5.3.18 Package WindDynamics 384 5.3.19 Package LoadDynamics. 424 5.3.20 Pack

37、age HVDCDynamics . 435 5.3.21 Package StaticVarCompensatorDynamics . 438 5.4 Package UserDefinedModels 440 5.4.1 General . 440 5.4.2 SynchronousMachineUserDefined . 441 5.4.3 AsynchronousMachineUserDefined 442 5.4.4 TurbineGovernorUserDefined 443 5.4.5 TurbineLoadControllerUserDefined 444 5.4.6 Mech

38、anicalLoadUserDefined . 445 5.4.7 ExcitationSystemUserDefined 446 5.4.8 OverexcitationLimiterUserDefined 447 5.4.9 UnderexcitationLimiterUserDefined 448 5.4.10 PowerSystemStabilizerUserDefined . 449 5.4.11 DiscontinuousExcitationControlUserDefined 449 BS EN IEC 61970302:2018IEC 61970-302:2018 IEC 20

39、18 3 5.4.12 PFVArControllerType1UserDefined 450 5.4.13 VoltageAdjusterUserDefined 451 5.4.14 PFVArControllerType2UserDefined 452 5.4.15 VoltageCompensatorUserDefined 453 5.4.16 LoadUserDefined . 454 5.4.17 WindType1or2UserDefined 454 5.4.18 WindType3or4UserDefined 455 5.4.19 WindPlantUserDefined . 4

40、56 5.4.20 CSCUserDefined . 457 5.4.21 VSCUserDefined . 457 5.4.22 SVCUserDefined . 458 5.4.23 ProprietaryParameterDynamics root class . 459 5.5 Package Examples . 460 Annex A (informative) Dynamics package symbol representation conventions . 464 Annex B (informative) Use of per unit. 466 Annex C (in

41、formative) Updates to CIM dynamics standard models . 468 Bibliography 473 Figure 1 StandardInterconnectionSynchronousMachine . 31 Figure 2 StandardInterconnectionSynchronousGeneratorCrossCompound . 32 Figure 3 StandardInterconnectionAsynchronousMachine . 33 Figure 4 StandardInterconnectionWindTurbin

42、eType1Aand1B . 34 Figure 5 StandardInterconnectionWindTurbineType2 . 35 Figure 6 StandardInterconnectionWindTurbineType3 . 36 Figure 7 StandardInterconnectionWindTurbineType4Aand4B . 37 Figure 8 StandardInterconnectionSingleLoad . 38 Figure 9 Class diagram StandardInterconnections:StandardSynchronou

43、sMachineInterconnection 39 Figure 10 Class diagram StandardInterconnections:StandardAsynchronousMachineInterconnection 40 Figure 11 Class diagram StandardInterconnections:StandardWindType1and2Interconnection 41 Figure 12 Class diagram StandardInterconnections:StandardWindType3and4Interconnection 43

44、Figure 13 Class diagram StandardInterconnections:StandardLoadInterconnection 44 Figure 14 Class diagram StandardInterconnections:StandardHVDCInterconnection 45 Figure 15 Class diagram StandardInterconnections:StandardStaticVarCompensatorInterconnection 46 Figure 16 SynchronousGeneratorInterconnectio

45、nAndVariables 50 Figure 17 SynchronousMotorInterconnectionAndVariables . 51 Figure 18 Class diagram SynchronousMachineDynamics:SynchronousMachineDynamics 52 Figure 19 SynchronousMachineSaturationParameters . 53 Figure 20 SynchronousGeneratorMechanicalEquation . 54 Figure 21 SynchronousMotorMechanica

46、lEquation 54 Figure 22 SynchronousGeneratorPhasor 55 BS EN IEC 61970302:2018 4 IEC 61970-302:2018 IEC 2018 Figure 23 SynchronousMotorPhasor 56 Figure 24 Simplified . 58 Figure 25 SubtransientRoundRotor 62 Figure 26 SubtransientSalientPole . 63 Figure 27 SubtransientTypeF . 64 Figure 28 SubtransientT

47、ypeJ . 65 Figure 29 SubtransientRoundRotorSimplified . 66 Figure 30 SubtransientSalientPoleSimplified 68 Figure 31 SubtransientRoundRotorSimplifiedDirectAxis . 70 Figure 32 SubtransientSalientPoleSimplifiedDirectAxis 72 Figure 33 SynchronousEquivalentCircuit 77 Figure 34 AsynchronousGeneratorInterco

48、nnectionAndVariables 81 Figure 35 AsynchronousMotorInterconnectionAndVariables . 81 Figure 36 Class diagram AsynchronousMachineDynamics:AsynchronousMachineDynamics . 82 Figure 37 AsynchronousGeneratorMechanicalEquation 83 Figure 38 AsynchronousMotorMechanicalEquation 83 Figure 39 AsynchronousEquival

49、entCircuit 87 Figure 40 TurbineGovernorInterconnectionAndVariables 89 Figure 41 Class diagram TurbineGovernorDynamics:TurbineGovernorDynamics 90 Figure 42 GovHydroIEEE0 . 92 Figure 43 GovHydroIEEE2 . 94 Figure 44 GovSteamIEEE1 96 Figure 45 GovCT1 . 99 Figure 46 GovCT2 . 103 Figure 47 GovGAST . 107 Figure 48 GovGAST1 . 109 Figure 49 GovGAST2 . 111 Figure 50 GovGAST3 . 114 Figure 51 GovGAST3ExhaustTempera

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