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考虑吸引域边界危机的电压稳定域划分方法

马晓阳 梁锦文 汪颖 肖先勇 于丹

电力系统保护与控制2025,Vol.53Issue(12):45-56,12.
电力系统保护与控制2025,Vol.53Issue(12):45-56,12.DOI:10.19783/j.cnki.pspc.241114

考虑吸引域边界危机的电压稳定域划分方法

Voltage stability region partitioning method considering boundary crises of the region of attraction

马晓阳 1梁锦文 1汪颖 1肖先勇 1于丹2

作者信息

  • 1. 四川大学电气工程学院,四川 成都 610065
  • 2. 国网河北省电力有限公司石家庄供电分公司,河北 石家庄 050000
  • 折叠

摘要

Abstract

Static voltage stability is an idealized concept that assumes infinitesimally small disturbances,which is not suitable for the secure operation of highly nonlinear power systems within the steady-state voltage stability region(SVSR).To address the problem of abrupt shrinkage of the attractive region caused by the boundary crises within the SVSR under large power disturbances,this paper proposes a voltage stability region partitioning method that considers boundary crises,referred to as voltage stability region considering boundary crises(BCVSR).First,the mechanism of boundary crises and their impact on voltage stability are studied through manifold analysis.Next,the theoretical findings are verified through phase trajectory analysis.Bifurcation analysis is subsequently employed to study the influence of parameter variations on the equilibrium sets and dynamic characteristics of direct-drive wind power integration system.Finally,the system's single-and double-parameter BCVSRs in the space of power injections are partitioned and compared with the SVSR.The results show that under large power disturbances,the proposed BCVSR method effectively excludes regions within the SVSR that are vulnerable to boundary crises,thereby enhancing voltage stability of the system.This provides valuable guidance for power adjustment in practical power system operations.

关键词

直驱风电并网系统/功率大扰动/电压稳定域/分岔与混沌理论/边界危机

Key words

direct-drive wind power integration system/large power disturbance/voltage stability region/bifurcation and chaos theory/boundary crisis

引用本文复制引用

马晓阳,梁锦文,汪颖,肖先勇,于丹..考虑吸引域边界危机的电压稳定域划分方法[J].电力系统保护与控制,2025,53(12):45-56,12.

基金项目

This work is supported by the National Natural Science Foundation of China(No.52107117). 国家自然科学基金项目资助(52107117) (No.52107117)

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