Impact of arc impedance on earth fault currents in medium voltage cable networks

R. Bernards, J. Morren, H. Slootweg
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引用次数: 4

Abstract

This paper demonstrates the influence of the fault arc on the magnitude of the fault current for single phase to ground faults in underground power cables. A method is suggested which allows incorporation of this impact in practical fault current calculations. Earth faults in underground cable networks depend on many parameters and are therefore complex to model and calculate exactly. Field measurements have shown the magnitude of actual occurring fault currents to sometimes be significantly lower than calculated, occasionally leading to non-selective fault clearing. A model of the arc impedance was developed and subsequently applied and verified in several case studies of actual measured faults. This showed that the arc impedance may cause a substantially lower fault current, but that its relative impact also varies significantly with the location of the fault. The proposed approach can be readily integrated into fault calculations to include this variable impact and allow for more precise determination of actual earth fault currents.
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中压电缆网络中电弧阻抗对接地故障电流的影响
本文论述了地下电力电缆单相接地故障时,故障电弧对故障电流大小的影响。提出了一种将这种影响纳入实际故障电流计算的方法。地下电缆网络中的接地故障依赖于许多参数,因此建模和精确计算非常复杂。现场测量表明,实际发生的故障电流有时明显低于计算值,偶尔会导致非选择性故障清除。建立了一个电弧阻抗模型,并在实际测量故障的几个案例研究中进行了应用和验证。这表明,电弧阻抗可以使故障电流大大降低,但其相对影响也随故障位置的变化而显著变化。所提出的方法可以很容易地集成到故障计算中,以包括这种可变的影响,并允许更精确地确定实际的接地故障电流。
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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