Partial discharge characteristics on applied sine wave voltage frequency with IEC(b) electrode system

T. Okamoto, M. Yashima
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引用次数: 1

Abstract

This paper describes applied voltage frequency dependence of partial discharge (PD) characteristics for development of frequency accelerating life test of insulating materials. In this paper we try to explain two things one is PD test of insulating materials with higher applied voltage frequency and the other one is partial discharge model to explain the PD characteristics. For the first one, we use an IEC(b) electrode system known as a simple standard model electrode system to measure PD life time. PET (Polyethylene terephthalate) sheets with thickness of 100 micrometer are used under sine wave applied voltage with frequency range of 50 Hz to 10 kHz. We compared several PD characteristics at different applied voltage frequencies and we found that important PD characteristics such as the maximum apparent discharge magnitude is almost independent of the applied voltage frequency within the experimental conditions. This implies that PET film can be tested at higher frequency than power frequency to reduce the test time. The other one is the establishing a PD model to explain the PD characteristics based on the integral equation method and partly succeeded to explain the PD characteristics obtained by IEC(b) electrode system.
IEC(b)电极系统施加正弦波电压频率下的局部放电特性
本文介绍了局部放电特性与外加电压频率的关系,为开展绝缘材料的频率加速寿命试验提供了依据。本文试图从两个方面来解释绝缘材料在高电压频率下的局部放电试验和局部放电模型来解释局部放电特性。对于第一个,我们使用IEC(b)电极系统,即简单标准模型电极系统来测量PD寿命。PET(聚对苯二甲酸乙二醇酯)板材厚度为100微米,在正弦波施加电压下使用,频率范围为50 Hz至10 kHz。我们比较了不同外加电压频率下的几种局部放电特性,发现在实验条件下,重要的局部放电特性(如最大视放电幅度)几乎与外加电压频率无关。这意味着PET薄膜可以在比工频更高的频率下进行测试,以减少测试时间。二是建立了基于积分方程法的局部放电模型来解释局部放电特性,部分成功地解释了IEC(b)电极体系得到的局部放电特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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