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首页> 外文期刊>Power Delivery, IEEE Transactions on >Phase Asymmetry: A New Parameter for Detecting Single-Phase Earth Faults in Compensated MV Networks
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Phase Asymmetry: A New Parameter for Detecting Single-Phase Earth Faults in Compensated MV Networks

机译:相位不对称:补偿MV网络中用于检测单相接地故障的新参数

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Traditionally, the detection of high-resistance earth faults has been a difficult task in compensated medium-voltage (MV) distribution networks, mainly due to its very low-current fault. To date, several techniques have been proposed to detect them: using current injection in the neutral, superposing voltage signals, varying the value of the arc suppression coil, etc. These techniques use different detection parameters, such as fault resistance to earth, line asymmetries, or partial residual neutral voltages. In this paper, phase asymmetry is defined as a new parameter that can be used, together with the aforementioned techniques, in order to improve the reliability and efficiency of the detection process in single-phase earth faults, especially for compensated networks. The use of this parameter has been validated through extensive simulations of resistive faults up to 15 kΩ , with the use of RESFAL software, which is based on Matlab/Simulink.
机译:传统上,高电阻接地故障的检测在补偿型中压(MV)配电网络中一直是一项艰巨的任务,这主要是由于其故障电流非常小。迄今为止,已经提出了几种检测它们的技术:在中性点注入电流,叠加电压信号,改变消弧线圈的值等。这些技术使用不同的检测参数,例如对地的抗故障能力,线路不对称性。 ,或部分残余中性电压。在本文中,相位不对称定义为可以与上述技术一起使用的新参数,以提高单相接地故障(尤其是补偿网络)中检测过程的可靠性和效率。通过使用基于Matlab / Simulink的RESFAL软件,通过对高达15kΩ的电阻故障进行广泛的仿真,已验证了此参数的使用。

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