Study of Arcing Faults in 35 kV Isolated Neutral and Resonant Grounded Systems Using Mathematical Model of Arc Gap

G. Evdokunin, Y. Seleznev, A. Petrova
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引用次数: 4

Abstract

The research indicates open-flame arc self-quenching conditions in 35 kV overhead distribution networks with low single phase-to-ground fault currents (less than 6 A): in an isolated neutral network and in a compensated network, taking into consideration arc extinction constraints for the channel modeling. The methodology stated (evidence from this 35 kV network studies) allows to analyze self-quenching conditions in case of overhead line faults. Transient single phase-to-ground faults such as direct lightning strikes, induced overvoltages due to a close lightning discharge, self-extinguishing faults entailed by incidents of mechanical origin can be considered. The analysis can be an integral part of the network reliability assessment, for instance, to calculate number of line cut-offs with fast or automatic reclosing.
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用电弧间隙数学模型研究35kv隔离中性点和谐振接地系统电弧故障
在考虑消弧约束的通道建模条件下,研究了35 kV架空配电网单相对地故障电流(小于6 A)较低情况下(隔离中性网络和补偿网络)明火电弧自熄条件。所述方法(来自35kv网络研究的证据)允许在架空线路故障的情况下分析自熄条件。可以考虑单相对地瞬态故障,如直接雷击、近距离雷击放电引起的感应过电压、由机械事故引起的自熄故障。该分析可以作为网络可靠性评估的一个组成部分,例如,计算快速或自动重合闸的线路切断次数。
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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