A low-complexity parametric modeling technique for insulator leakage current based on synchronous detection

R. Ghosh, B. Chatterjee, D. Dey, S. Chakravorti
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引用次数: 2

Abstract

This paper proposes a method of parametric modeling for insulator leakage current employing synchronous detection technique. Since insulator surface degradation is characterized by changes in the harmonic content of the surface leakage current, synchronous detection serves as an efficient methodology with low computational burden, to compress the signal through parametric modeling. The performance of the proposed method has been compared with other well known parametric modeling techniques such as sine fitting and Kalman filtering, and the advantages of the proposed method have been highlighted. It has been demonstrated that the proposed method is able to estimate the true frequency with high precision and has the lowest computation time. The high precision and low computational time of the synchronous detection technique makes it a suitable algorithm for insulator leakage current monitoring through field devices.
基于同步检测的绝缘子漏电流低复杂度参数化建模技术
提出了一种采用同步检测技术对绝缘子泄漏电流进行参数化建模的方法。由于绝缘子表面退化的特征是表面泄漏电流谐波含量的变化,因此同步检测是一种计算量低的有效方法,可以通过参数化建模来压缩信号。将该方法的性能与正弦拟合和卡尔曼滤波等参数化建模技术进行了比较,并突出了该方法的优点。实验结果表明,该方法具有较好的估计频率精度和较低的计算时间。同步检测技术具有精度高、计算时间短的特点,是一种适用于现场设备监测绝缘子漏电流的算法。
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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