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考虑控制链路延时的双端LCC-HVDC系统改进谐波状态空间建模

王顺亮 刘海军 马俊鹏 谢洋 李永琪 赵远 彭茂兰

现代电力2026,Vol.43Issue(1):10-19,10.
现代电力2026,Vol.43Issue(1):10-19,10.DOI:10.19725/j.cnki.1007-2322.2023.0385

考虑控制链路延时的双端LCC-HVDC系统改进谐波状态空间建模

Improved Harmonic State Space Modeling for Dual-terminal LCC-HVDC Systems Considering Time Delay

王顺亮 1刘海军 1马俊鹏 1谢洋 1李永琪 1赵远 1彭茂兰2

作者信息

  • 1. 四川大学电气工程学院,四川省成都市 610065
  • 2. 中国南方电网有限责任公司超高压输电公司,广东省 广州市 510663
  • 折叠

摘要

Abstract

With the widespread application of line-commutated-converter based high voltage direct current(LCC-HVDC)technology,the harmonic interaction issue of AC-DC hybrid power grid is becoming more and more serious.The establishment of an LCC-HVDC small signal model is an essential approach to analyze the AC-DC harmonic coupling characteristics of the converter.The influence of harmonics on the LCC-HVDC system is analyzed by constructing a small-signal model of dual-terminal 12-pulse LCC-HVD based on the harmonic state space(HSS)theory.This model not only takes into account the LCC harmonic transfer characteristics and the connection method of converter transformers,but also considers the influence of time delay on the dual-terminal LCC system.The modeling process is simplified based on the idea of modularization,so that the harmonic state space modeling is easier to expand,thereby improving the accuracy of small-signal modeling for the dual-terminal LCC system.The specific expression of AC and DC harmonic transfer is provided and the accuracy of the proposed model is verified through simulation.The proposed model lays a solid foundation for both subsequent expansion or access to more complex system,as well as the interaction stability analysis and parameter design of the dual-terminal LCC system.

关键词

谐波状态空间/控制链路延时/谐波传递特性/高压直流输电/模块化

Key words

harmonic state space/control link time delay/harmonic transfer characteristics/high voltage direct current(HVDC)/modular

分类

信息技术与安全科学

引用本文复制引用

王顺亮,刘海军,马俊鹏,谢洋,李永琪,赵远,彭茂兰..考虑控制链路延时的双端LCC-HVDC系统改进谐波状态空间建模[J].现代电力,2026,43(1):10-19,10.

基金项目

国家自然科学基金项目(51977135).Project Supported by National Natural Science Foundation of China(51977135). (51977135)

现代电力

1007-2322

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