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Partial discharge behaviours within a void-dielectric system under square waveform applied voltage stress

机译:方波施加电压应力下空介电系统内的局部放电行为

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There are many factors, which influence the behaviours of partial discharge (PD) within a void located in a solid dielectric material. One of the important factors is the waveform of the applied voltage on the electrode of a system, such as its amplitude and frequency. In this study, a two-dimensional axial-symmetric model of a cylindrical void in polyethylene layers has been developed using finite element analysis software. The model was used to simulate PD activity in the void under square waveform applied voltage under different amplitudes of the voltage. The model has considered the effect of charge propagation along the void surface during a PD occurrence. The obtained simulation results were compared with the measurement results reported from previous literature to validate the PD model that has been developed in this work. It was found that the simulation and measurement results are within reasonable agreement with only slight disagreement. From the comparison, critical parameters from the model that affect PD behaviours under square waveform applied voltage were found to be the electron generation rate and the inception, extinction and critical charge propagation fields. These findings may increase an understanding of PD behaviours within a void in a dielectric material under square waveform applied voltage, which is important for insulation diagnosis.
机译:有许多因素会影响位于固体介电材料中的空隙内的局部放电(PD)的行为。重要因素之一是在系统的电极上施加电压的波形,例如其幅度和频率。在这项研究中,已经使用有限元分析软件开发了聚乙烯层中圆柱形空隙的二维轴向对称模型。该模型用于模拟在不同电压幅度下施加方波电压下空隙中的PD活性。该模型考虑了在PD发生期间电荷沿空隙表面传播的影响。将获得的仿真结果与以前文献中报告的测量结果进行比较,以验证在这项工作中开发的PD模型。结果发现,仿真和测量结果在合理的范围内,只有一点点分歧。通过比较,发现该模型中影响方波施加电压下的PD行为的关键参数是电子的产生速率以及起始,消光和临界电荷传播场。这些发现可能会加深对方波施加电压下介电材料孔隙中PD行为的了解,这对于绝缘诊断很重要。

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