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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Partial discharges in a cavity at variable applied frequency part 1: measurements
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Partial discharges in a cavity at variable applied frequency part 1: measurements

机译:可变频率下腔中的局部放电第1部分:测量

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In this paper partial discharges (PD) in disc-shaped cavities in polycarbonate are measured at variable frequency (0.01 ?? 100 Hz) of the applied voltage. The advantage of PD measurements at variable frequency is that more information about the insulation system may be extracted than from traditional PD measurements at a single frequency (usually 50/60 Hz). The PD activity in the cavity is seen to depend on the applied frequency. Moreover, the PD frequency dependence changes with the applied voltage amplitude, the cavity diameter, and the cavity location (insulated or electrode bounded). It is suggested that the PD frequency dependence is governed by the statistical time lag of PD and the surface charge decay in the cavity. This is the first of two papers addressing the frequency dependence of PD in a cavity. In the second paper a physical model of PD in a cavity at variable applied frequency is presented.
机译:在本文中,在施加电压的可变频率(0.01≤100 Hz)下,测量了聚碳酸酯圆盘形空腔中的局部放电(PD)。可变频率的局部放电测量的优势在于,与从单个频率(通常为50/60 Hz)上的传统局部放电测量相比,可以提取更多有关绝缘系统的信息。可以看到空腔中的PD活性取决于所施加的频率。此外,PD频率依赖性随施加的电压幅度,腔体直径和腔体位置(绝缘或电极边界)而变化。建议PD频率依赖性受PD的统计时间滞后和腔中表面电荷衰减的支配。这是解决空腔中PD频率依赖性的两篇论文中的第一篇。在第二篇论文中,介绍了在可变的应用频率下,PD腔中PD的物理模型。

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