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Preliminary work on the detection of partial discharges in SF6 under impulse voltages

机译:在脉冲电压下检测SF6中的局部放电的初步工作

摘要

This paper presents preliminary results of an investigation into the detection of partial discharges on the rise of impulse voltages from a point-to-plane gap in SF6. A parallel RC detection impedance is placed in the earth path of a point. Computer simulations are done to determine the values of R and C that will result in the smallest impulse voltage signal and the largest discharge signal across the detection impedance. These simulations and the experimental work show that the impulse voltage signal can not be sufficiently attenuated during the rise time of the applied voltage impulse using the RC detection impedance alone. An alternative discharge detection method is proposed in which a resonant partial discharge coupler is used. Elimination of noise and the impulse voltage signal can be achieved by shorting the coupler plate to the ground plane in the middle of the disk. However, due to the bandwidth of the measuring equipment and noise from the impulse generator it was not possible to detect discharges on the rising edge of a 1.5s voltage impulse using a coupler shorted in the middle. It was found that for this particular coupler, with no shorting points, and if the rising edge of the voltage impulse is longer than 5us, (10us) PD activity can be detected on the rising edge.
机译:本文介绍了研究从SF6的点到面间隙在脉冲电压上升时检测局部放电的初步结果。并联的RC检测阻抗放置在点的接地路径中。进行计算机仿真以确定R和C的值,这些值将在整个检测阻抗上产生最小的脉冲电压信号和最大的放电信号。这些仿真和实验工作表明,仅使用RC检测阻抗,在施加的电压脉冲的上升时间内不能充分衰减脉冲电压信号。提出了一种替代的放电检测方法,其中使用了谐振局部放电耦合器。通过将耦合器板与磁盘中间的接地层短接,可以消除噪声和脉冲电压信号。但是,由于测量设备的带宽和脉冲发生器产生的噪声,因此无法使用中间短路的耦合器来检测1.5µs电压脉冲上升沿的放电。已经发现,对于这种特定的耦合器,没有短路点,并且如果电压脉冲的上升沿长于5μus,则可以在上升沿检测到(10μus)PD活动。

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