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多逆变器并网系统谐振评估方法研究

秦浩庭 胡鑫垚 钟帆

现代电力2026,Vol.43Issue(1):30-39,10.
现代电力2026,Vol.43Issue(1):30-39,10.DOI:10.19725/j.cnki.1007-2322.2023.0374

多逆变器并网系统谐振评估方法研究

Study on Resonance Assessment Method for Multi-inverter Grid-connected Systems

秦浩庭 1胡鑫垚 2钟帆2

作者信息

  • 1. 西南电力设计院有限公司能源规划研究院,四川省成都市 610000
  • 2. 西南交通大学电气工程学院,四川省成都市 611756
  • 折叠

摘要

Abstract

With the rapid development of renewable energy sources,the number of inverter grid-connected installations continues to increase,leading to increasingly complex harmonic resonance characteristics of multi-inverter grid systems.Serious harmonic resonance accidents will occur when the excitation frequency of harmonic sources matches the system's resonant frequency.To comprehensively grasp the harmonic resonance characteristics of multi-inverter grid systems,in this paper we first establish the corresponding equivalent Norton circuit model based on the structure of a single inverter grid system and the inverter control diagram.Then,the model is extended to obtain an equivalent model for multi-inverter grid systems.A comprehensive resonance assessment method is proposed,utilizing modal analysis to determine the resonance conditions of the grid-connected system.Furthermore,the participation degree of inverter nodes,transmission line nodes,and common connection points in resonance is determined using the participation factor method.The impact of various inverter parameters on resonance is further investigated by analyzing the impedance and frequency influence indicators.A three-inverter grid system is utilized as a case study for harmonic resonance assessment.Finally,the proposed harmonic resonance assessment method is validated through simulation,providing a basis for inverter parameter design and system resonance control.

关键词

多逆变器/谐振特性/谐振评估/阻抗影响度/频率影响度

Key words

multi-inverter/resonance characteristics/resonance assessment/impedance influence degree/frequency influence degree

分类

信息技术与安全科学

引用本文复制引用

秦浩庭,胡鑫垚,钟帆..多逆变器并网系统谐振评估方法研究[J].现代电力,2026,43(1):30-39,10.

基金项目

国家自然科学基金项目(51877182) (51877182)

四川省科技厅项目(2021YJ0028).Project Supported by National Natural Science Foundation of China(51877182) (2021YJ0028)

Science & Technology Department Project of Sichuan Province(2021YJ0028). (2021YJ0028)

现代电力

1007-2322

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