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Dependence of partial discharge UHF characteristics on metal particel position at insulating spacer in GIS

机译:GIS中绝缘子上金属颗粒位置的局部放电UHF特性的依赖性

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In this paper, the influence of metal particle position at insulating spacer on partial discharge (PD) characteristics is studied by using the ultra high frequency (UHF) detection method in a 252kV GIS PD experimental platform. The PD inception voltage (PDIV), phase resolved partial discharge (PRPD), phase resolved pulse sequence (PRPS) and UHF signal waveform and its frequency spectrum are investigated with different defect position and under stepped applied voltage amplitude. By combining the electric field analysis of insulating spacer surface and PD investigation results, the influence of metal particle position on PD characteristics is clarified. It is shown that, the PDIV of metal particle defect increases with electric field strength on spacer surface due to the distortion of electric field on surface. The PRPD and PRPS images behave as the floating discharge pattern. The high order modes of EM waves are easier excited when the metal particle placed near the flange of space. The detection sensitivity of extractor-type sensor is much higher than that of external sensor, however it is a little lower than that of interior sensor.
机译:本文在252kV GIS PD实验平台上,通过超高频(UHF)检测方法研究了绝缘子上金属颗粒位置对局部放电(PD)特性的影响。研究了不同缺陷位置和阶梯式施加电压幅度下的局部放电起始电压(PDIV),相分辨局部放电(PRPD),相分辨脉冲序列(PRPS)和UHF信号波形及其频谱。通过将绝缘垫片表面的电场分析和局部放电研究结果结合起来,弄清了金属颗粒位置对局部放电特性的影响。结果表明,由于表面电场的畸变,金属颗粒缺陷的PDIV随隔板表面电场强度的增加而增加。 PRPD和PRPS图像表现为浮动放电图案。当金属粒子置于空间边缘附近时,更容易激发EM波的高阶模态。抽气式传感器的检测灵敏度远高于外部传感器,但略低于内部传感器。

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