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海上风电柔性直流送出系统控制耦合作用及差动保护适应性分析

胡宏 许凌 张梦瑶 张添 林勇超 姚骏 黄阮明

电力建设2025,Vol.46Issue(3):166-176,11.
电力建设2025,Vol.46Issue(3):166-176,11.DOI:10.12204/j.issn.1000-7229.2025.03.014

海上风电柔性直流送出系统控制耦合作用及差动保护适应性分析

Study of Control Coupling Effect and Differential Protection Adaptability of Offshore Wind Farm with MMC-HVDC Transmission System

胡宏 1许凌 1张梦瑶 1张添 2林勇超 2姚骏 2黄阮明3

作者信息

  • 1. 国家电网有限公司华东分部,上海市 200120
  • 2. 输变电装备技术全国重点实验室(重庆大学),重庆市 400044
  • 3. 国网上海市电力公司,上海市 200233
  • 折叠

摘要

Abstract

High voltage direct current(HVDC)transmission technology based on modular multilevel converter(MMC)has become one of the mainstream solutions for large-scale offshore wind farms connected to the grid.When a short circuit fault occurs at the outgoing line of the sending system,the control coupling between the MMC station and the wind farm changes the fault current characteristics of the system significantly,which seriously affects the reliable of the relay protection device.In order to determine the influence of the control coupling effect of the MMC station and wind farm on the differential protection adaptability,the coupling mechanism of the system is analyzed based on the system control model,and the expression of the stable equilibrium point under the symmetric fault at sending end is derived.Secondly,the range of current reference and phase difference distribution under control coupling are defined.On this basis,the differential protection adaptability of the sending system is discussed,and the influence of system control coupling on protection reliability is summarized.Finally,the time-domain simulation model of the system is established,and the simulation results verify the correctness of the theoretical analysis.

关键词

海上风电/柔性直流输电/差动保护/控制耦合作用/故障电流特性

Key words

offshore wind farm/flexible HVDC transmission/differential protection/control coupling/fault current characteristic

分类

信息技术与安全科学

引用本文复制引用

胡宏,许凌,张梦瑶,张添,林勇超,姚骏,黄阮明..海上风电柔性直流送出系统控制耦合作用及差动保护适应性分析[J].电力建设,2025,46(3):166-176,11.

基金项目

This work is supported by the Science and Technology Project of East China Grid Company Limited(ECGC)(No.520800230023). 国家电网有限公司华东分部科技项目资助(520800230023) (ECGC)

电力建设

OA北大核心

1000-7229

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