Understanding partial discharge activity in GIS due to particle movement under high frequency AC voltage adopting UHF technique

Rajat Mishra, Harish Muthukrishnan, A. Ramanan, R. Sarathi
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引用次数: 1

Abstract

Experimental studies were carried out to understand the partial discharges initiated due to particle movement in GIS operated at different pressure, under high frequency AC voltages adopting UHF technique. The rise time of partial discharge current pulse formed due to particle movement is 2ns. It is observed that the frequency contents of the signal radiated due to partial discharges generated due to particle movement in the electrode gap filled with SF6 lies in the UHF signal range, with its dominant frequency at near 1 GHz, irrespective of frequency of the supply voltage and the operating pressure. The UHF signal magnitude and the time required for 100 UHF signal to form shows direct correlation. Ternary diagram clearly indicates that irrespective of frequency of the supply voltage, the UHF signal location (signal generated due to PD) in the ternary diagram is the same.
采用超高频技术研究高频交流电压下粒子运动引起的GIS局部放电活动
采用超高频技术对不同压力下运行的GIS中粒子运动引起的局部放电进行了实验研究。粒子运动形成的局部放电电流脉冲上升时间为2ns。可以观察到,在SF6填充的电极间隙中,粒子运动产生的局部放电所辐射的信号频率含量在UHF信号范围内,其主导频率在1ghz附近,与电源电压和工作压力的频率无关。超高频信号的大小与100超高频信号形成所需的时间呈直接相关关系。三元图清楚地表明,无论电源电压的频率如何,UHF信号在三元图中的位置(由PD产生的信号)是相同的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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