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Simulation of Void Discharges and Time Domain Examination of Their Emitted Electromagnetic Signals

机译:空隙放电的模拟及其发出的电磁信号的时域检查

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The goal of this paper is to present the time domain behavior of the emitted electromagnetic signals of void discharges and to show the design process of the measured partial discharge (PD) sources. After the introduction of the used physical models and equations, the finite element calculations used to create a modified empirical ignition criterion for the discharge and to determine the optimal dimensions of the samples are presented. Using these sizes, two void discharge sources were created by including different diameter air bubbles in a thin layer of epoxy resin between two electrodes. After this, the emitted electromagnetic signals of the sources were measured using a noise-free GTEM cell and a digital sampling oscilloscope. From the measured signals, PRPD patterns have been created to examine the activity of the emitted void discharge signals as the function of the phase angle of the AC testing voltage. This was followed by the examination of the effect of bubble size on the PRPD characteristics. The results of the emitted measurements were consistent with the conducted measurement results of the literature and the partial discharge physics based model of the air-filled cavity.
机译:本文的目的是介绍空隙放电的电磁信号的时域行为,并说明测量的局部放电(PD)源的设计过程。在介绍了使用的物理模型和方程后,介绍了用于创建放电的改进的经验点火准则并确定样品的最佳尺寸的有限元计算。使用这些尺寸,通过在两个电极之间的环氧树脂薄层中包含不同直径的气泡来创建两个空隙放电源。此后,使用无噪声的GTEM单元和数字采样示波器测量源的发射电磁信号。根据测量的信号,已创建PRPD模式,以检查所发射的空放电信号的活动,该活动是交流测试电压的相角的函数。然后检查气泡大小对PRPD特性的影响。发射的测量结果与文献中进行的测量结果以及充气腔的基于局部放电物理模型的测量结果一致。

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