Discussion on Fault Analysis for High-capacity and Multi Column Parallel Arrester

Boyu Zhang, Zi-ming He, Xia Zhao, Xuebin Lyv
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Abstract

The operation data show that the failure rate of high-capacity and multi column parallel arrester, such as the neutral bus arrester, the series compensation arrester and so on, is relatively high, and the cause of most faults is not clear. In order to improve the reliability of multi column parallel arrester, several possible factors are studied in this paper, such as the volt ampere characteristics of arrester under different temperature, the current sharing performance under different temperature or different current waveforms, and the energy absorption capacity under different current waveforms and so on. It is pointed out that the high failure rate of high capacity and multi column parallel arrester is mainly due to the large dispersion of energy absorption capacity and inevitable “short resistor”. It is proposed that the fundamental way to solve the high failure rate of multi column parallel arrester is to reduce the “short resistor” probability, optimize the structure and improve the withstand capacity with “short resistor”.
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大容量多列并联避雷器故障分析探讨
运行数据表明,中性点母线避雷器、串联补偿避雷器等大容量多列并联避雷器故障率较高,多数故障原因尚不清楚。为了提高多列并联避雷器的可靠性,本文研究了不同温度下避雷器的伏安特性、不同温度或不同电流波形下的电流分担性能、不同电流波形下的能量吸收能力等几个可能的因素。指出大容量多列并联避雷器的高故障率主要是由于能量吸收能力弥散较大和不可避免的“短电阻”。提出解决多列并联避雷器故障率高的根本途径是降低“短电阻”概率,优化结构,提高“短电阻”的承受能力。
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