Suzhou Electric Appliance Research Institute
期刊号: CN32-1800/TM| ISSN1007-3175

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干式直流支撑电容器的绝缘电阻特性分析与试验测试

来源:电工电气发布时间:2025-04-03 10:03浏览次数:6

干式直流支撑电容器的绝缘电阻特性分析与试验测试

李印达1,2,孙晓武1,2,曹崇峰1
(1 无锡市电力滤波有限公司, 江苏 无锡 214112;
2 晟容电力科技(安徽)有限公司, 安徽 铜陵 244000)
 
    摘 要:绝缘电阻会影响干式直流支撑电容器(DCLC)的均压、储能性能,故对高温、高场强下 DCLC 的绝缘电阻特性分析具有重要意义。以工作场强 E0 是 233.3 V/μm 时的 DCLC 为研究对象,分析 DCLC 的绝缘电阻和电导率,并搭建了相关试验平台,开展不同温度和不同场强下的等效绝缘电阻测量试验,分析 DCLC 的等效绝缘电阻影响因素。研究结果表明:DCLC 的等效绝缘电阻随着工作场强增加而快速下降;DCLC 的等效绝缘电阻随着温度增加而下降。分析得出,影响 DCLC 的等效绝缘电阻关键因素为聚丙烯薄膜材料、金属层的蒸镀。
    关键词: 干式直流支撑电容器;等效绝缘电阻;金属化聚丙烯薄膜;自放电时间常数
    中图分类号:TM533+.3     文献标识码:B     文章编号:1007-3175(2025)03-0035-06
 
Analysis and Experimental Testing of Insulation Resistance
Characteristics of Dry DC Link Capacitor
 
LI Yin-da1,2, SUN Xiao-wu1,2, CAO Chong-feng1
(1 Wuxi Power Filter Co., Ltd, Wuxi 214112, China;
2 Sheng Rong Power Technology (Anhui) Co., Ltd, Tongling 244000, China)
 
    Abstract: Insulation resistance affects the voltage balancing and energy storage performance of dry DC link capacitor (DCLC), which is of great significance for the analysis of insulation resistance characteristics of DCLC at high temperature and high field strength. In this paper,taking a DCLC with the working field strength E0 of 233.3 V/μm as the research object, analyzing the insulation resistance and conductance of DCLC, and building the related test platform, based on this, the equivalent insulation resistance measurement tests were carried out at different temperatures and different field strengths to analyze the factors affecting the equivalent insulation resistance of DCLC. The results show that the equivalent insulation resistance of DCLC decreases rapidly with the increase of the working field strength, the equivalent insulation resistance of DCLC decreases with the increase of temperature. It is analyzed that the key factors affecting the equivalent insulation resistance of DCLC are polypropylene film material and the vaporization of the metal layer.
    Key words: dry DC link capacitor; equivalent insulation resistance; metallized polypropylene film; self-discharge time constant
 
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