Transfer function modeling of partial discharge behavior evolved during application of a time varying power frequency voltage

Ana L. Vivas-Barber, Rohitha Dhara, M. A. Rab, P. Basappa, Sunmi Lee
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Abstract

In this work, an attempt has been made to model the relationship between the amplitude of a 60Hz voltage applied in a step fashion to a rod-plane Gap with a dielectric barrier (a nanofilled polypropylene film affixed to ground plane) and the resulting partial discharge quantities. The applied voltage sampled at discrete time intervals is considered as input and corresponding partial discharges sampled at equispaced times as output resulting in a bivariate stochastic process. The main field is controlled by a programmable logic controller programmed autotransformer and the PD behavior is dependent on the combined effect of variations in main field and the field due to residual charges from earlier partial discharges. The experimental results are analyzed through a transfer function model. The details of the steps involved in the modeling process are discussed and results are presented.
时变工频电压作用下局部放电行为的传递函数建模
在这项工作中,已经尝试建立了以阶梯方式施加到具有介电屏障(附着在地平面上的纳米填充聚丙烯薄膜)的杆面间隙的60Hz电压的振幅与所产生的局部放电量之间的关系模型。以离散时间间隔采样的外加电压被认为是输入,相应的局部放电以等间隔时间采样作为输出,从而产生一个二元随机过程。主场由可编程逻辑控制器编程自变压器控制,局部放电行为依赖于主场变化和早期局部放电残余电荷引起的场的综合效应。通过传递函数模型对实验结果进行了分析。讨论了建模过程中所涉及的步骤的细节,并给出了结果。
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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