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计及占空比限幅环节的直流配电系统暂态稳定性分析

蔡元鑫 彭克 赵学深 邢琳 杨云虹

电力系统自动化2024,Vol.48Issue(16):51-58,8.
电力系统自动化2024,Vol.48Issue(16):51-58,8.DOI:10.7500/AEPS20240202003

计及占空比限幅环节的直流配电系统暂态稳定性分析

Transient Stability Analysis of DC Distribution System Considering Duty Cycle Limiter

蔡元鑫 1彭克 1赵学深 1邢琳 1杨云虹1

作者信息

  • 1. 山东理工大学电气与电子工程学院,山东省淄博市 255000
  • 折叠

摘要

Abstract

Under the condition of high power disturbance,the limiter is prone to the saturation phenomenon of duty cycle,and the DC power distribution system will be degraded from closed-loop control to open-loop response and transient instability.Therefore,this paper carries out the transient stability analysis of DC power distribution system considering the duty cycle limiter.Firstly,this paper uses Sigmoid function to simulate the nonlinear characteristics of duty cycle limiter,and establishes a large-signal model of DC distribution system which is closer to the engineering reality.Secondly,the estimated attraction domain taking into account the influence of the duty cycle limiter is characterized by the Takagi-Sugeno(TS)fuzzy modeling method.Then,the variation of the estimated attraction domain with different control parameters reveals the transient instability phenomenon of the DC distribution system induced by duty cycle saturation.Finally,for the limitations of the existing transient stability improvement methods due to the duty cycle limiter,an optimization design method of control parameters is proposed to provide a scheme for the control parameter selection to improve the transient stability of the system.The effectiveness of the theoretical analysis is verified by the RT-Box hardware-in-the-loop experiment.

关键词

直流配电系统/占空比限幅环节/Sigmoid函数/暂态稳定性/参数优化

Key words

DC power distribution system/duty cycle limiter/Sigmoid function/transient stability/parameter optimization

引用本文复制引用

蔡元鑫,彭克,赵学深,邢琳,杨云虹..计及占空比限幅环节的直流配电系统暂态稳定性分析[J].电力系统自动化,2024,48(16):51-58,8.

基金项目

山东省自然科学基金资助项目(ZR2023ME034). This work is supported by Shandong Provincial Natural Science Foundation of China(No.ZR2023ME034). (ZR2023ME034)

电力系统自动化

OA北大核心CSTPCD

1000-1026

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