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GB/T 33603-2017 English PDF

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GB/T 33603-2017: Coding specification of dynamic message for electric power system model and data
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Basic data

Standard ID GB/T 33603-2017 (GB/T33603-2017)
Description (Translated English) Coding specification of dynamic message for electric power system model and data
Sector / Industry National Standard (Recommended)
Classification of Chinese Standard F21
Classification of International Standard 29.020
Word Count Estimation 15,129
Date of Issue 2017-05-12
Date of Implementation 2017-12-01
Quoted Standard GB/T 16263.1-2006; GB/T 16720.1; GB/T 18700.1; DL/T 476; DL/T 634.5104; DL/T 860.72; DL/Z 890.401; DL/T 1080.3
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
Summary This standard specifies the dynamic message encoding applied to the data of the power system model, including the coding structure, data type, coding mode, basic coding rules and coding applications. This standard applies to dynamic message communication and power system model data description.

GB/T 33603-2017: Coding specification of dynamic message for electric power system model and data

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Coding specification of dynamic message for electric power system model and data ICS 29.020 F21 National Standards of People's Republic of China Power system model data dynamic message coding specification 2017-05-12 released 2017-12-01 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 1 4 acronym 1 5 coding structure 2 5.1 M coding area 2 5.2 M coded head 2 5.2.1 Header definition 2 5.2.2 Encoding Type 3 5.2.3 Extended logo 3 6 data type 3 7 compatible ASN.1 encoding (M0) 5 8 with the name ASN.1 encoding (M1) 5 9 object encoding mode (M2) 6 9.1 Encoding Rules 6 9.2 Head Extension 6 Class 10 Encoding (M3) 6 10.1 Encoding Rules 6 Class 10.2 Description Item 7 Basic coding rules Expand Rule 7 Extended Rule 7 11.3 Alignment rules 8 11.4 Order Rule 8 11.5 Static Rule 8 11.6 Dynamic Rules 8 11.7 Service Rules 8 Encoding applications Application in Dynamic Message Communication Application of 12.2 in Data Description of Power System Model 12.2.1 Overall structure 9 12.2.2 Directory Structure Description 9 12.2.3 Index Structure Description 9 Appendix A (informative) Power system model Data description C Language format definition 11

Foreword

This standard is drafted in accordance with the rules given in GB/T 1.1-2009. This standard is proposed by the China Electricity Council. This standard by the National Grid Operation and Control Standardization Technical Committee (SAC/TC446) centralized. The drafting unit of this standard. State Grid Corporation of China National Electric Power Dispatching Control Center, China Southern Power Grid Power Dispatching Control Center, Beijing Branch East Power Control System Co., Ltd., Guodian NARI Technology Co., Ltd., China Electric Power Research Institute, State Grid Corporation of East China Beijing Electric Power Company, Guangdong Power Grid Co., Ltd. Electric Power Research Institute, Nanjing Nanrui Following the protection of Electric Co., Ltd. The main drafters of this standard. Xin Yaozhong, Li Junliang, Tao Hongzhu, Shang Xuewei, Chen Guoping, Xu Hongqiang, Yan Yaqin, Liang Shouyu, Zhang Liang, Zhang Hao, FANG Wen-zhong, LIU Li-hua, WU Fei-feng, XU Jian-hang, LEI Bao-long, ZHANG Hong, GAO Yuan, HUAN Jing, LU Guang-ming, WANG Lei, LIU Fei, Money line.

Introduction

With the increase of power grid scale, the application of power system is becoming more and more complicated, and it is urgent to describe the power system model And the method of data. This standard uses binary self-description to describe large-scale power system models and data, to improve the model data description and The efficiency of communication transmission. Power system model data dynamic message coding specification

1 Scope

This standard specifies the dynamic message coding applied to the data of the power system model, including the coding structure, data type, coding mode, basic Coding rules and coding applications. This standard applies to dynamic message communication and power system model data description.

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 file. For undated references, the latest edition (including all modifications) applies to this document. Information technology - ASN.1 coding rules - Part 1. Basic coding rules (BER) - Regular coding (GB/T 16263.1-2006) Rules (CER) and atypical coding rules (DER) specifications GB/T 16720.1 Industrial automation systems - Manufacturing message specification (MMS) - Part 1. Service definition GB/T 18700.1 Telecontrol equipment and systems Part 6. Telecontrol protocols compatible with ISO standards and ITU-T recommendations Section 503 TASE.2 Services and Agreements DL/T 476 Power System Real-time Data Communication Application Layer Protocol DL/T 634.5104 Telecontrol equipment and systems - Part 5-104. Transmission protocols IEC 60870-5- 101 network access DL/T 860.72 Power automation communication networks and systems - Part 7-2. Basic information and communication structures - Abstract communication services Mouth (ACSI) DL/Z890.401 Energy Management System Application Programming Interface (EMS-API) - Part 401. Component Interface Specification (CIS) Framework DL/T 1080.3 System application for integrated power distribution management for power enterprise applications - Part 3. Grid operating interface

3 terms and definitions

The following terms and definitions apply to this document. 3.1 Coding method codingmode Data attribute description and data organization. 3.2 Dynamic message encoding dynamicmessagecoding Dynamic coding of the power system model and data in a self-contained way, referred to as M coding. This standard gives the M0, M1, M2 and M3 four encoding methods. 3.3 Type expand typeexpansion The composite data type is treated as a combination of simple types.

4 abbreviations

The following abbreviations apply to this document.