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Partial discharge detection and analysis of needle-plane defect in SF6 under negative oscillating lightning impulse voltage based on UHF method

机译:基于UHF方法的负振荡雷电冲击电压下SF6针面缺陷的局部放电检测与分析

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摘要

Gas insulated switchgear (GIS) is used in power system more and more widely. With the increased voltage level of power system, field impulse voltage withstand test becomes increasingly important. It would be beneficial for a comprehensive insulation evaluation to carry out the detection of partial discharge (PD) under impulse voltage withstand test in field. Metal protrusions or particles on HV conductor are typical defects in GIS and are critical at lightning impulse voltages. This paper therefore aims at PD characteristics study on needle-plane defect under oscillating lightning impulse (OLI). PD detection system was established based on ultra-high frequency (UHF) and pulse current detection. Then, the PD of a needle-plane defect under negative OLI was measured. The relation between statistical time lag, PD amplitude, PD times and the applied voltage was analyzed respectively based on UHF detection. The results show that UHF detection has high sensitivity and it is suitable in field impulse voltage withstand test. PDs occur around each wave peak of the applied voltage. With the increase of peak voltage, PD magnitude and PD times in each oscillation cycle both increase linearly. Further analysis indicates that the occurrence and development of PD under negative OLI can be interpreted by electron emission from metal surface, field detachment from negative ions and corona stabilization effect. This approach is valuable for PD measurement and analysis in field impulse voltage withstand test for GIS.
机译:气体绝缘开关设备(GIS)在电力系统中的应用越来越广泛。随着电力系统电压水平的提高,现场脉冲耐压测试变得越来越重要。在现场进行脉冲耐压测试时,进行局部放电(PD)的检测对于全面绝缘评估是有益的。高压导体上的金属突起或颗粒是GIS中的典型缺陷,对于雷电冲击电压至关重要。因此,本文针对振荡雷电脉冲(OLI)下针面缺陷的PD特性研究。建立了基于超高频和脉冲电流检测的局部放电检测系统。然后,测量负OLI下针平面缺陷的PD。基于UHF检测分别分析了统计时滞,PD幅值,PD时间与外加电压之间的关系。结果表明,超高频检测具有较高的灵敏度,适用于现场脉冲耐压测试。 PD出现在施加电压的每个波峰周围。随着峰值电压的增加,每个振荡周期中的PD幅度和PD时间都线性增加。进一步的分析表明,负OLI下PD的发生和发展可以通过金属表面的电子发射,负离子的场脱离和电晕稳定效应来解释。这种方法对于GIS现场脉冲耐压测试中的PD测量和分析非常有价值。

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