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An improved time-delay addition method for MOSA resistive leakage current extraction under applied harmonic voltage

机译:施加谐波电压下用于MOSA电阻泄漏电流提取的改进延时加法

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摘要

The most monitoring techniques of metal oxide surge arresters are based on harmonics analysis of resistive leakage current. Therefore, the extraction of resistive component from total leakage current is required. Up to now, several methods have been proposed for resistive leakage current extraction such as time-delay addition method. This method is only able to separate accurate resistive component under pure sinusoidal applied voltage. An improved time-delay addition method is proposed in this paper which is able to extract surge arrester resistive component under applied harmonic voltage. To accomplish this purpose, experimental tests have been performed on 20 kV surge arrester and obtained voltage and leakage current signals have been applied to the proposed and previous algorithms for resistive component extraction. In addition to investigate the ability of proposed algorithm, a typical surge arrester has been simulated in ATP-EMTP software and total leakage currents have been applied to both algorithms for resistive leakage current extraction. Results show that the proposed method is able to extract resistive component under applied harmonic voltage more accurate than previous one. Therefore, it is an improvement with respect to previous one that only works for sinusoidal voltage. (C) 2015 Elsevier Ltd. All rights reserved.
机译:金属氧化物电涌放电器的大多数监视技术基于电阻性泄漏电流的谐波分析。因此,需要从总泄漏电流中提取电阻成分。到目前为止,已经提出了几种用于电阻性泄漏电流提取的方法,例如延时加法。该方法只能在纯正弦波施加电压下分离出准确的电阻分量。提出了一种改进的延时加法,该方法能够在施加谐波电压的情况下提取电涌放电器的电阻分量。为实现此目的,已对20 kV电涌放电器进行了实验测试,并将获得的电压和泄漏电流信号应用于提出的和先前的电阻成分提取算法。除了研究所提出算法的能力外,还在ATP-EMTP软件中对典型的避雷器进行了仿真,并将总泄漏电流应用于这两种算法,以提取电阻性泄漏电流。结果表明,所提出的方法能够在施加谐波电压的情况下比以前的方法更准确地提取电阻分量。因此,相对于仅适用于正弦电压的以前的改进。 (C)2015 Elsevier Ltd.保留所有权利。

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