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GB/T 33607-2017 English PDF

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GB/T 33607-2017: Smart grid operation and control system architecture
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PDF similar to GB/T 33607-2017


Standard similar to GB/T 33607-2017

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Basic data

Standard ID GB/T 33607-2017 (GB/T33607-2017)
Description (Translated English) Smart grid operation and control system architecture
Sector / Industry National Standard (Recommended)
Classification of Chinese Standard F21
Classification of International Standard 29.240
Word Count Estimation 23,295
Date of Issue 2017-05-12
Date of Implementation 2017-12-01
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 overall design and system framework of the intelligent grid dispatching control system, which regulates the functions of the basic platform, real-time monitoring and warning application, dispatch planning and security checking application, dispatch management application, and power grid running cockpit class application Positioning and composition, the overall system performance requirements. This standard is applicable to the design, research and development, construction, acceptance, operation and maintenance of the intelligent grid dispatching control system at provincial level and above. County (with) level scheduling control system with reference.

GB/T 33607-2017: Smart grid operation and control system architecture

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Smart grid operation and control system architecture ICS 29.240 F21 National Standards of People's Republic of China The Overall Framework of Intelligent Grid Dispatching Control System 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 III 1 Scope 1 2 normative reference document 1 3 Terms and definitions 1 4 system overall framework 1 4.1 General Framework Requirements 1 4.2 Overall framework composition 2 4.3 Relationship between basic platform and various applications 3 4.4 Data Logical Relationships between Applications 5 base platform 4 5.1 General requirements 4 5.2 Basic Platform System Framework 4 5.3 Message bus and service bus 6 5.4 Data storage and management 6 5.5 Platform Management 7 5.6 Public Service 9 Data Acquisition and Exchange 5.8 System Security 11 6 real - time monitoring and early warning applications 11 6.1 functional positioning and composition of real-time monitoring and early warning 6.2 real-time monitoring and intelligent alarm 12 6.3 Analysis of hydropower and new energy monitoring 12 6.4 Automatic power control 12 6.5 Network Analysis 12 6.6 Online Security and Stability Analysis 12 6.7 Scheduling Operation Auxiliary Decision 13 6.8 On-line verification and warning of relay protection settings 6.9 dispatcher training simulation 6.10 Auxiliary monitoring 13 6.11 Operation analysis and evaluation 13 7 Scheduling and security check class application 13 7.1 Function and positioning of dispatch plan and security check 7.2 Data reporting and information release 14 7.3 Forecast 14 7.4 Short-term transaction management 14 7.5 Maintenance Plan 14 7.6 Power Generation Plan 14 7.7 Hydropower and New Energy Dispatching 14 7.8 Planning Analysis and Assessment 14 7.9 Examination and settlement 15 7.10 static security check 15 7.11 Stable calculation checking 7.12 Auxiliary decision 15 7.13 Stability margin assessment 15 8 scheduling management class application 15 8.1 Function and configuration of scheduling management 8.2 Control Production Operation Management 15 8.3 Professional Management 16 8.4 Internal work management Comprehensive Analysis and Evaluation 8.6 Information Display and Release 16 8.7 External Sharing and Collaboration 16 9 grid running cockpit class application 16 9.1 Functional positioning and construction of the cockpit of the grid operation 16 9.2 Running KPI Monitoring Early Warning 16 9.3 Running the Panorama View 16 9.4 centralized console System Performance and Indicators 17 10.1 Capacity 17 10.2 Performance Indicators 17 10.3 Functional availability 18

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, China Power Force Science Research Institute, State Grid Corporation of North China Branch, State Grid Corporation of East China Branch, State Grid Beijing Electric Power Company, Guangdong Power Grid Limited Any company, State Power NARI Technology Co., Ltd., Beijing Kodong Electric Power Control System Co., Ltd., China Energy Construction Group Guangdong Province Electric Power Design Institute. The main drafters of this standard. Xin Yaozhong, Tao Hongzhu, Zhou Jieying, Yan Yaqin, Zhao Manyong, Hu Rong, Zhou Huafeng, Pan Yi, Zhou Jingyang, Yan Jianfeng, Yang Zhenglin, Zhang Zhe, Bi Xiaoliang, Wang Yong, Deng Dawei, Dai Zemei, Shen Guohui, Peng Hui, Meng Yongliang, Zhai Mingyu, Mi Weimin, Shi Jianhua, Cui Hui, Lu Guangming, Tang Lin, Shang Xuewei, Yang Zhihong, Yu Jun, Wang Bin, Wang Xingzhi, Wei Lingxiao, Zhu Zhiling, Liu Jinwei, Liu Tao, Yuan Qhai, Xu Jianbing, Yu Jun, Shi Junjie, Deng Zhaoyun, Cuihengzhi, Chang Qing, Yang Junfeng, Luo Zhiqiang, Dai Sai, Huang Guodong. The Overall Framework of Intelligent Grid Dispatching Control System

1 Scope

This standard specifies the overall design and system framework of the intelligent grid dispatching control system, standardizes the basic platform, real-time monitoring and early warning Application, scheduling and security check class application, scheduling management class application, power grid running cockpit class application function positioning and composition, system total Body performance requirements. This standard is applicable to the design, research and development, construction, acceptance, operation and maintenance of the intelligent grid dispatching control system at provincial level and above. County (with) Level scheduling control system with reference.

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. GB/T 30149 Specification for Generic Model of Power Grid Code of Practice for GB/T 31464 Power Grid GB/T 31992 Generic alarm format for power systems Technical specification for smart grid dispatching control system - Part 2. Terminology GB/T 33590.2 GB/T 33601 Generic specification for general model data for grid equipment GB/T 33602 General Service Agreement for Power Systems Specification for dynamic message coding of power system model data GB/T 33603 GB/T 33604 Power system simple service interface specification Code for message transmission of power system messages GB/T 33605 DL/T 476 Power System Real-time Data Communication Application Layer Protocol Specification for DL/T 1170 Power Dispatch Workflow Description Code Specification for Power System of DL/T 1230 Power System Code for data exchange of DL/T 1380 grid operation model DL/T 1456 Power System Database Universal Access Interface Specification National Development and Reform Commission.2014, No. 14, "power monitoring system security protection"

3 terms and definitions

GB/T 33590.2 Definitions of terms and definitions apply to this document.

4 system overall framework

4.1 Overall framework requirements Smart grid scheduling control system of the main system and preparation system should adopt exactly the same system architecture framework, with the same function And to achieve the main, prepare the integration of the operation. Horizontal, the scheduling system through a unified base platform to achieve the integration of various types of applications to run And the interaction with the management information system to achieve the main and standby between the application of the coordination of the operation and the main and standby system maintenance and data synchronization;