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Investigation of the Evaluation of the PD Severity and Verification of the Sensitivity of Partial-Discharge Detection Using the UHF Method in GIS

机译:GIS中局部放电严重程度评估和局部放电检测灵敏度的验证研究

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摘要

The measurement of partial discharge (PD) using ultra-high frequency (UHF) method is considered an effective approach to monitor the online condition of the equipment, which is used to facilitate the detection of incipient defects in gas-insulated switchgear (GIS). In this paper, in order to assess the severity of PD defects using UHF method, the actual 220-kV GIS were subjected to experimentation. The PD was measured simultaneously by using the UHF method and the IEC60270 measurement technique. The combined measurement has been carried out on different defects in PD test cells, including the floating metal, metallic protrusion, and void in epoxy resin. The inner coupler installed in the GIS tank, and the outer coupler placed outside the spacer, are used to measure the UHF signal. The relationship of the apparent charge and the amplitude of the time-domain signal, and the integral energy from 300 MHz to 1.6 GHz of the signal induced by PD in GIS are analyzed thoroughly. In this way, the severity of PD can be quantified using the UHF signal. In addition, to verify the sensitivity of the UHF detection method, a pulse generator with a rise time of about 500 ps is designed. The GIGRE method for the verification of sensitivity, which is used worldwide, is applied in the experiment. The results of the pulse generator experiment are compared to the results produced by the actual discharge sources, and several possible approaches of improving this method are proposed.
机译:使用超高频(UHF)方法测量局部放电(PD)被认为是监视设备在线状态的有效方法,用于促进气体绝缘开关设备(GIS)早期缺陷的检测。为了使用UHF方法评估PD缺陷的严重性,对实际的220 kV GIS进行了实验。通过使用UHF方法和IEC60270测量技术同时测量PD。已对PD测试电池中的不同缺陷(包括浮动金属,金属凸起和环氧树脂中的空隙)进行了组合测量。安装在GIS储罐中的内部耦合器和放置在垫片外部的外部耦合器用于测量UHF信号。深入分析了表观电荷与时域信号幅度的关系以及GIS中PD引起的信号在300 MHz至1.6 GHz之间的积分能量。这样,可以使用UHF信号量化PD的严重程度。另外,为了验证UHF检测方法的灵敏度,设计了具有大约500 ps上升时间的脉冲发生器。实验中使用了全球范围内使用的GIGRE灵敏度验证方法。将脉冲发生器实验的结果与实际放电源产生的结果进行比较,并提出了几种改进此方法的可能方法。

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