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Insulation Diagnosis of GIS Based on Amplitude Ratio of First Incoming PD-induced Electromagnetic Wave Measured by UHF Method

机译:基于UHF法测量的首次入射PD感应电磁波振幅比的GIS绝缘诊断

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摘要

This paper describes insulation diagnosis of SF6 gas insulated switchgears (GIS) by detecting partial discharge (PD)-induced electromagnetic (EM) waves using UHF method. Sensitively detecting PD signals is effective to prevent breakdown in GIS because PD is a pre-breakdown phenomenon. Breakdown in SF6 gas under nonuniform field takes place when PD type proceeds from streamer to leader discharge. Therefore, breakdown prediction becomes possible by discriminating PD type, that is, by detecting generation of leader discharge. An amplitude of PD-induced EM wave depends on the time derivative of PD current. Experimental results revealed that the time derivative in rising part of PD current for streamer discharge is almost same as that for leader one while that in the falling part is quite different. Thus, one can recognize the generation of leader discharge by noting the ratio of the EM wave magnitude of the positive peak value to the negative one of the first incoming EM wave.In this study, an attempt was made to discriminate leader and streamer-type discharges on the basis of the amplitude ratio of first incoming EM wave measured with UHF sensors. Furthermore, we investigated effects of trigger level of a digital oscilloscope in the measurement of the EM wave and UHF sensor position on detection sensitivity and discrimination probability of PD type while changing the SF6 gas pressure and the applied ac voltage. As a result, it was found that leader discharge can be discriminated from streamer one with a probability as high as 70% using a criterion of amplitude ratio of first incoming EM wave VP+/VP-=0.7. When VP-=0.8 is used as criterion, the discrimination probability increases as high as 80%.
机译:本文通过使用UHF方法检测局部放电(PD)感应的电磁(EM)波,来描述SF6气体绝缘开关设备(GIS)的绝缘诊断。敏感地检测PD信号可有效防止GIS中的故障,因为PD是一种预分解现象。当PD类型从拖缆到先导排放时,SF6气体在不均匀场下发生分解。因此,通过区分PD类型,即通过检测引导放电的产生,可以进行故障预测。 PD感应的EM波的幅度取决于PD电流的时间导数。实验结果表明,用于流光放电的PD电流的上升部分的时间导数与引出线的时间导数几乎相同,而下降部分的时间导数则完全不同。因此,通过注意到正向峰值的EM波幅度与第一个入射EM波的负向电磁波幅度之比,可以识别出前导放电的产生。在本研究中,我们试图区分前导和流光类型根据使用UHF传感器测量的第一个入射EM波的振幅比进行放电。此外,我们在改变SF6气压和施加的交流电压的情况下,研究了数字示波器的触发电平在测量EM波和UHF传感器位置时对PD型检测灵敏度和判别概率的影响。结果,发现使用第一入射EM波VP + / VP- = 0.7的振幅比的标准可以以高达70%的概率将前导放电与拖缆区别开。当VP- = 0.8用作标准时,辨别概率增加高达80%。

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