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GB/T 37015.1-2018 English PDF

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GB/T 37015.1-2018: Performance of high-voltage direct current power transmission system using voltage sourced converters (VSC-HVDC) -- Part 1: Steady-state
Status: Valid
Standard IDUSDBUY PDFLead-DaysStandard Title (Description)Status
GB/T 37015.1-2018359 Add to Cart 4 days Performance of high-voltage direct current power transmission system using voltage sourced converters (VSC-HVDC) -- Part 1: Steady-state Valid

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Basic data

Standard ID: GB/T 37015.1-2018 (GB/T37015.1-2018)
Description (Translated English): Performance of high-voltage direct current power transmission system using voltage sourced converters (VSC-HVDC) -- Part 1: Steady-state
Sector / Industry: National Standard (Recommended)
Classification of Chinese Standard: F21
Classification of International Standard: 29.240.01
Word Count Estimation: 18,185
Date of Issue: 2018-12-28
Date of Implementation: 2019-07-01
Issuing agency(ies): State Administration for Market Regulation, China National Standardization Administration

GB/T 37015.1-2018: Performance of high-voltage direct current power transmission system using voltage sourced converters (VSC-HVDC) -- Part 1: Steady-state


---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.
Performance of high--voltage direct current power transmission system using voltage sourced converters (VSC--HVDC)--Part 1. Steady--state ICS 29.240.01 F21 National Standards of People's Republic of China Flexible DC transmission system performance Part 1. Steady state Voltagesourcedconverters(VSC-HVDC)-Part 1.Steady-state Published on.2018-12-28 2019-07-01 implementation State market supervision and administration China National Standardization Administration issued

Content

Foreword III 1 Scope 1 2 Normative references 1 3 Terms and Definitions 1 4 operational adaptability 2 4.1 General requirements 2 4.2 AC voltage 2 4.3 Negative sequence current 2 4.4 AC frequency 2 4.5 Power Quality 3 4.6 AC grid strength 3 4.7 AC side short circuit current 3 5 Basic design requirements 3 5.1 General requirements 3 5.2 Requirements for the converter topology 3 5.3 Requirements for Primary System Main Wiring 3 5.4 Requirements for AC and DC field equipment 3 6 mode of operation 3 6.1 General requirements 3 6.2 Inverter operation mode 4 6.3 DC system operation mode 4 7 control system 4 7.1 General requirements 4 7.2 Function 5 7.3 Performance 5 7.4 Structure 5 8 Reliability 6 9 loss 6 Appendix A (informative) Modular multilevel converter and its submodule typical structure 7 Appendix B (informative) Main equipment of flexible DC converter station 10 Appendix C (informative) Flexible DC transmission control system structure 11

Foreword

GB/T 37015 "Flexible DC Transmission System Performance" is divided into two parts. --- Part 1. Steady state; --- Part 2. Transient. This part is the first part of GB/T 37015. This part is drafted in accordance with the rules given in GB/T 1.1-2009. This part was proposed by the China Electricity Council. This part is under the jurisdiction of the National High Voltage Direct Current Transmission Engineering Standardization Technical Committee (SAC/TC324). This section was drafted. China Electric Power Research Institute Co., Ltd., State Grid Economic and Technological Research Institute Co., Ltd., NARI Group Co., Ltd. Division, Global Energy Internet Research Institute, Xuji Group Co., Ltd. The main drafters of this section. Bu Guangquan, Wang Wei, Zhao Bing, Guo Xianshan, Du Xiaolei, Sun Huadong, Wang Tiezhu, Wu Guanglu, Li Yingwei, Mei Nian, Lu Yu, Yang Yuexi, Wang Xianwei, Wang Nannan, Fan Zheng, Yuan Bin, Yi Jun, Ma Shicong, Wu Ping. Flexible DC transmission system performance Part 1. Steady state

1 Scope

This part of GB/T 37015 specifies the requirements for the steady-state performance of flexible DC transmission systems from the perspective of safety and stability of the power system. It includes requirements for operational adaptability, basic design requirements, operating methods, control systems, reliability and loss. This section applies to the steady-state performance of DC back-to-back, end-to-end, multi-end systems using only modular multi-level voltage source converters. This section can be used for DC transmission systems using current source converters. This section can be used to guide the planning, design, construction and operation of flexible HVDC systems.

2 Normative references

The following documents are indispensable for the application of this document. For dated references, only dated versions apply to this article. Pieces. For undated references, the latest edition (including all amendments) applies to this document. GB/T 13498 HVDC transmission terminology Determination of GB/T 20989 high voltage DC converter station loss GB/T 30553 high voltage direct current transmission based on voltage source converter GB/T 34118 voltage source converter terminology for high voltage DC systems GB/T 34139 flexible DC transmission converter technical specification GB/T 35702.1 Voltage source converters for high-voltage DC systems - Part 1 . General requirements GB/T 35702.2 Voltage source converter valve losses for high-voltage DC systems - Part 2. Modular multi-level converters IEEE1204 DC Access Weak AC System Design Guidelines (GuideforPlanningDCLinksTerminatingatACLo- cationsHavingLowShort-CircuitCapacities)

3 Terms and definitions

GB/T 13498, GB/T 30553, GB/T 34118, GB/T 34139, IEEE1204 and the following terms and definitions apply Used in this document. 3.1 Half-bridge submodule half-bridgesubmodule A submodule consisting of two series switching units and a DC capacitor in parallel. Note. See Figure A.1 in Appendix A. 3.2 Full bridge submodule H-bridgesubmodule A sub-module consisting of a half-bridge sub-module in parallel with two series-connected switching units. Note. See Figure A.2. 3.3 Half-bridge modular multilevel converter half-bridgeMMCconverter The bridge arm is a multi-level converter composed of a plurality of half-bridge sub-modules connected in series.
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