Simulation of Partial Discharge Electromagnetic Wave Propagation in a Switchgear Compartment

Mijodrag Miljanovic, Martin Kearns, B. Stewart
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引用次数: 1

Abstract

Partial discharge (PD) is one of the main failure contributors in medium voltage (MV) and high voltage (HV) equipment. Left unattended it can lead to service outages of electrical power system. In the case of air insulated MV switchgear equipment there is still need to identify the most effective placement of sensors for PD detection. To assist in optimizing sensor placement, a three-dimensional (3-D) finite element method (FEM) switchgear compartment model with bus bars is developed to study the propagation of electromagnetic waves generated by PD. The distribution of propagated electric field generated within the bus bar compartment from PD at two different locations is studied in the time domain. The simulations provide an improved understanding of the radiated frequency (RF) propagation signals within the internal design, thus understanding better the complex propagation paths to enable future sensor optimization positions.
部分放电电磁波在开关柜室中的传播仿真
局部放电是造成中压、高压设备故障的主要原因之一。如果无人看管,它可能导致电力系统的服务中断。在空气绝缘中压开关柜设备的情况下,仍然需要确定PD检测传感器的最有效位置。为了优化传感器布置,建立了带母线的开关柜三维有限元模型,研究了PD产生的电磁波的传播规律。研究了两个不同位置PD在母线室内产生的传播电场的时域分布。模拟提供了对内部设计中的辐射频率(RF)传播信号的更好理解,从而更好地理解复杂的传播路径,从而使未来的传感器优化位置。
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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