12 / 2018-07-28 10:00:50
Detection and Diagnosis of Multiple-void Discharge Sources in On-site 550kV GIS Insulating Spacer
Partial discharge, void discharge, UHF Detection, GIS
终稿
Ziling Wang / State Grid Zhejiang Electric Power CO., LTD. Research Institute
Xiaoxin Chen / State Grid Zhejiang Electric Power CO., LTD. Research Institute
Feiran Li / State Grid Zhejiang Electric Power CO., LTD. Research Institute
Wenlin He / State Grid Zhejiang Electric Power CO., LTD. Research Institute
Xianjun Shao / State Grid Zhejiang Electric Power CO., LTD. Research Institute
Bingxiao Mei / State Grid Zhejiang Electric Power CO., LTD. Research Institute
This article introduced a case of on-site detection, return test and diagnostic analysis of a multiple voids discharge in 550 kV GIS insulating spacer. First, the abnormal signal of the on-site 550 kV GIS insulating spacer is detected by employing the UHF method, and the pattern of UHF signal presents as void discharge. After the replacement of the insulating spacer, the withstand voltage, partial discharge (PD) test, X-ray inspection, lightning impact test are applied to this insulating spacer. The pulse current and UHF method are combined together to investigate the discharge characteristics of multiple voids in this insulating spacer. The initial discharge voltage and the extinction voltage before and after the lightning impact voltage test are compared. Finally, the UHF signals of this insulating spacer are clustered by multi-source discharge separation method. It is found that, there are eight voids linearly distributed inside the insulating spacer. The amplitudes of UHF and pulse current signals are positively correlated, and the discharge spectrum is characterized by multiple-void discharge. The PD initial voltage of the insulating spacer decreases while the PD extinction voltage keeps same after the lightning impact voltage test, and the signal amplitudes of the UHF and pulse current methods increase rapidly. The discharge multiple source separation shows that the UHF signal of the insulating spacer can be divided into two clusters, which is consistent with the two distribution areas of voids. This article provides on-site experience for insulation detection and diagnosis of GIS.
重要日期
  • 会议日期

    04月07日

    2019

    04月10日

    2019

  • 04月10日 2019

    注册截止日期

  • 05月12日 2019

    初稿截稿日期

主办单位
IEEE电介质和电气绝缘协会
中国电工学会工程电介质专业委员会
承办单位
华南理工大学
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