电容器宽频等效模型与损耗分析
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作者单位:

1.重庆大学 输变电装备技术全国重点实验室,重庆 400044;2.云南电网有限责任公司文山供电局,云南 文山 663000

作者简介:

张正(1999—),男,硕士研究生,主要从事电力电容器在线状态监测研究,(E-mail)norzz@sina.com。

通讯作者:

杜林,男,博士,教授,(E-mail)dulin@cqu.edu.cn。

中图分类号:

TM855

基金项目:


Wideband modeling and loss analysis of power capacitors under harmonic voltages
Author:
Affiliation:

1.State Key Laboratory of Power Transmission Equipment Technology, Chongqing University, Chongqing 400044, P. R. China;2.Wenshan Power Supply Bureau of Yunnan Power Grid Co., Ltd., Wenshan, Yunnan 663000, P. R. China

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    摘要:

    电力电容器承担着无功补偿、滤波、载波和高频保护的功能,实际施加在电力电容器上的电压含有大量谐波成分,导致电容器的损耗特性更为复杂。为了获取谐波电压下电容器的有功损耗规律,结合电容器实际结构,提出基于扩展Debye模型的电容器宽频分布式等效模型,推导电容器极板电压、电流解析表达式,分析极板电压、电流分布特性,考虑极板损耗与介质损耗,开展有功损耗分布研究,研究表明:谐波电压使流经电容器极板的电流幅值增大,在极板上呈现非线性分布;随着电压频率提升,电容器有功损耗显著提升,且在高频段,极板损耗在总有功损耗中占据绝对主导地位;提出通过增加电压输入点、均匀极板电流分布的方法,可有效降低电容器有功损耗。

    Abstract:

    Power capacitors are widely used for reactive power compensation, harmonic filtering, carrier transmission, and high-frequency protection in power systems. In practical operating conditions, the voltage applied to power capacitors contains significant harmonic components, resulting in complex loss characteristics. To accurately characterize the active power losses of capacitors under harmonic voltages, a wideband distributed equivalent model based on the extended Debye model is proposed, taking into account the actual physical structure of the capacitor. Analytical expressions for the voltage and current distributions on the capacitor plates are derived, and their spatial characteristics are systematically analyzed. By considering both electrode (plate) losses and dielectric losses, the distribution of active power loss within the capacitor is investigated, and the corresponding rules are summarized. The results indicate that harmonic voltages increase the amplitude of the current flowing on the capacitor plates, leading to a nonlinear current distribution. Moreover, as the voltage frequency increases, the active power loss of the capacitor rises significantly, and in the high-frequency range, the plate losses become the dominant contributors to the total active power loss. Based on these findings, a loss reduction strategy is proposed, in which the number of voltage input points is increased to promote a more uniform electrode current distribution, thereby effectively reducing the active power loss of the capacitor.

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张正,杜林,陈伟根,惠世贤.电容器宽频等效模型与损耗分析[J].重庆大学学报,2026,49(3):13-24.

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  • 收稿日期:2024-02-04
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  • 在线发布日期: 2026-04-02
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