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A double end fault location technique for distribution systems based on fault-generated transients

机译:基于故障产生暂态的配电系统双端故障定位技术

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摘要

This paper presents a fault location technique for distribution systems. It is a two end impedance based technique that uses the fault generated transients to estimate the fault distance over a broad range of frequencies. Then, curve fitting is applied to find the final estimated fault distance. Firstly, the paper introduces the method for the system represented as a lumped RL model. Then, generalized to consider the distribution line capacitance. The technique accounts for presence of loading taps, heterogeneous feeder sections, single phase, two phase and three phase loads and unbalance in distribution system. Single line to ground, line to line, and three phase faults are considered at different fault resistance values up to 100 Ω. Also, the effect of fault inception angle and resolution of analogue to digital converter is investigated. IEEE 34 nodes system is used to evaluate the proposed method.
机译:本文提出了一种配电系统的故障定位技术。这是一种基于两端阻抗的技术,该技术使用故障产生的瞬态来估算大范围频率上的故障距离。然后,应用曲线拟合来找到最终的估计故障距离。首先,介绍了以集总RL模型表示的系统方法。然后,综合考虑配电线路的电容。该技术考虑了负载抽头,异类馈线段,单相,两相和三相负载以及配电系统不平衡的存在。在不超过100 to的不同故障电阻值下,应考虑单线接地,线间故障和三相故障。此外,研究了故障起始角度和模数转换器分辨率的影响。 IEEE 34节点系统用于评估该方法。

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