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计及控保协同的自适应电流差动保护方法

张博 王聪博 詹荣荣 余越

中国电力2025,Vol.58Issue(2):1-8,8.
中国电力2025,Vol.58Issue(2):1-8,8.DOI:10.11930/j.issn.1004-9649.202407104

计及控保协同的自适应电流差动保护方法

Adaptive Current Differential Protection Method Considering Control and Protection Coordination

张博 1王聪博 1詹荣荣 1余越1

作者信息

  • 1. 电网安全全国重点实验室(中国电力科学研究院有限公司),北京 100192
  • 折叠

摘要

Abstract

The VSC-HVDC transmission system for large-scale new energy has become a typical scenario in China's new power system.However,the transmission line between the new energy station and the flexible direct converter is special with its both sides being power electronic devices,and affected by different converter control strategies,the short-circuit current waveform is seriously distorted,which reduces the sensitivity of traditional longitudinal protection and increases the risk of rejection.Therefore,an adaptive current differential protection method considering control and protection coordination is proposed.Based on the fault ride throgh strategy of the VSC-HVDC,the fault current characteristics on both sides are analyzed,and an adaptive protection criterion for control and protection coordination is constructed by combining the control reference value of the converter and the protection criterion.Finally,a VSC-HVDC transmission system model for new energy is built based on PSCAD,and the performance of the proposed protection is verified by simulation.The results show that the proposed protection can quickly identify different fault types in the fault region with the sensitivity improved by 2~3 times compared with the traditional differential protection principle,which can meet the requirements of the new power systems for protection sensitivity and reliability.

关键词

交流线路/故障穿越/控保协同/柔性直流

Key words

AC lines/fault ride through/control and insurance coordination/VSC-HVDC

引用本文复制引用

张博,王聪博,詹荣荣,余越..计及控保协同的自适应电流差动保护方法[J].中国电力,2025,58(2):1-8,8.

基金项目

国家电网有限公司科技项目(JB83-23-005). This work is supported by Science and Technology Project of SGCC(No.JB83-23-005). (JB83-23-005)

中国电力

OA北大核心

1004-9649

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