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                    Data model of protective relays based on IEC 61850
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                    GB/T 32890-2016
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  Basic data             |  Standard ID  |          GB/T 32890-2016 (GB/T32890-2016) |               |  Description (Translated English)  |          Data model of protective relays based on IEC 61850 |               |  Sector / Industry  |          National Standard (Recommended) |               |  Classification of Chinese Standard  |          K45 |               |  Classification of International Standard  |          29.240 |               |  Word Count Estimation  |          109,118 |               |  Date of Issue  |          2016-08-29 |               |  Date of Implementation  |          2017-03-01 |               |  Regulation (derived from)  |          National Standard Announcement 2016 No.14 |               |  Issuing agency(ies)  |          General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China |         
  GB/T 32890-2016: Data model of protective relays based on IEC 61850---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.  
Data model of protective relays based on IEC 61850
ICS 29.240
K45
National Standards of People's Republic of China
IEC 61850 Engineering Application Model for Relay Protection
2016-08-29 released
2017-03-01 implementation
General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China
China National Standardization Management Committee released
Directory
Preface I
Introduction II
1 Scope 1
2 normative reference document 1
3 terms and definitions, abbreviations 1
4 General 2
5 configuration 2
6 IED Application Model Specification 5
Principles of Service Implementation
8 MMS dual network redundancy mechanism 12
9 GOOSE model and implementation specification
10 SV model and implementation specification
11 IED Physical Port Description Specification 14
Repair and Handling Mechanism
13 Conformance Test 15
Appendix A (Normative Appendix) Process Layer Virtual Terminal CRC Check Code Generation Rule 17
Appendix B (informative) Principles of naming of related logical devices
Appendix C (informative) Logical node class definition 1 24
Appendix D (informative) Logical Node Class Definition 2 40
Appendix E (normative appendix) Uniform expansion of common data class 55
Appendix F (Normative Appendix) Uniformly defined data types and data attribute types
Appendix G (informative) Logical node prefix naming example
Appendix H (Normative Appendix) Failure Report File Format 77
Appendix I (informative) Classification device model 81
Appendix J (normative) IED physical port description and station control layer dual network configuration example 95
Appendix K (informative) GOOSE, SV Engineering Profile Example 97
Appendix L (Normative Appendix) Service Consistency Requirements
Appendix M (informative) Device logical node prefix example 104
Foreword
This standard is drafted in accordance with the rules given in GB/T 1.1-2009.
Please note that some of the contents of this document may involve patents. The issuer of this document does not assume responsibility for the identification of these patents.
This standard is proposed by the China Electricity Council and centralized.
The drafting of this standard unit. Zhejiang Electric Power Dispatching Control Center, Nanjing NARI Jubao Electric Co., Ltd., National Electricity Dispatching Control Center,
China Southern Power Grid Power Dispatching Control Center, Shandong Electric Power Dispatching Control Center, Guangdong Electric Power Dispatching Control Center, Guangzhou Power Supply Bureau, China Power
Scientific Research Institute, Zhejiang Electric Power Research Institute, Jiangsu Electric Power Research Institute, Xu Ji Electric Co., Ltd., Beijing Quartet Ji Bao Automation
Co., Ltd., Guodian Nanjing Automation Co., Ltd., Guodian Nairui Technology Co., Ltd., Shandong Rongfu new information technology limited
the company.
The main drafters of this standard. Dai Xiaoxiang, Qiu Xuedao, Li Li, Xu Peng, Wang Song, Li Yiquan, Xu Qiangchao, Tang Yi, Jiang Jianning, Bu Qiangsheng,
Liao Zeyou, Deng Junbo, Chen Fuding, Zhou Bin, Cui Dalin, Li Peng, Xiu Dawn.
Introduction
To standardize the application of IEC 61850 substation communication network and system international standards, to achieve the interoperability of manufacturers of equipment, improve
IEC 61850 standard equipment production, commissioning, maintenance, operation of the convenience, specially developed relay protection IEC 61850 engineering application model.
DL/T 860 is equivalent to the national standard with IEC 61850 standard, this standard uses DL/T 860, no other
IEC 61850.
IEC 61850 Engineering Application Model for Relay Protection
1 Scope
This standard specifies the configuration, model and service of the communication network and system of the substation when the DL/T 860 standard substation is used in the substation.
Can, grammar, semantic uniformity, and the normative nature of the selected parameters, and specify the principles that should be followed in the practical application of the model.
This standard applies to the DL/T 860 standard new substation automation system relay protection and related equipment engineering design and
Application, transformation project reference implementation.
2 normative reference documents
The following documents are indispensable for the application of this document. For dated references, only the dated edition applies to this article
Pieces. For undated references, the latest edition (including all modifications) applies to this document.
DL/T 860 (all parts) substation communication networks and systems
Technical specification for implementation of DL/T 860
3 terms and definitions, abbreviations
3.1 Terms and definitions
The following definitions and definitions of the DL/T 860 and the following terms apply to this document.
3.1.1
Virtual terminal virtualterminator
Describe the general name of the GOOSE, SV input, and output signal connection points of the IED device to identify the process layer, the interval layer and the interconnection
Department of the secondary circuit signal, equivalent to the traditional substation screen terminal.
3.1.2
Virtual connection virtualconnection
Using GOOSE, SV to achieve IED equipment between the information input and output connection, to identify the IED between the virtual terminal
Access logic.
3.2 abbreviations
The following abbreviations apply to this document.
Acc Accelererate Accelerate
BF circuit breaker failure (Breakerfailure)
BRCB has cache report control block (BuferReportControlBloc)
CID IED instance configuration file (ConfiguredIEDDescription)
CT current transformer (Currenttransformer)
Dev Device
Err Error (Error)
Fst First (First)
GOOSE for Genericobjectorientedsubstationevents for Generic Objects
   
   
  
  
    
  
    
   
        
       
          
               
 
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