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Extended Impedance-Based Fault Location Formulation for Unbalanced Underground Distribution Systems

机译:基于扩展的基于阻抗的故障定位配方,用于不平衡地下配电系统

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Underground distribution systems are commonly exposed to permanent faults. Due to specific construction characteristics, visual inspection for fault location cannot be performed. To overcome this limitation, accurate fault location techniques must be applied. In this paper, an extended impedance-based fault location formulation for unbalanced underground distribution systems is described considering single line-to-ground faults. The technique uses only local voltages and currents as input data. An iterative algorithm for cable capacitive current compensation in the fault location formulation is proposed. The formulation focuses an easily practical implementation and is based on typical available system's data, as lines impedance and admittance matrices, and also system loads. Test simulations on a real data underground distribution system demonstrate the proposed extensions improvements. The algorithm performance presents negligible fault resistance, distance, and inception angle variation effects.
机译:地下配电系统通常受到永久性故障。由于具体的施工特点,无法进行故障定位目视检查。为了克服这种局限性,精确故障定位技术必须被应用。在本文中,对不平衡地下配电系统的扩展基于阻抗的故障定位制剂被描述在考虑单个线对地故障。该技术仅使用本地的电压和电流作为输入数据。在故障定位制剂电缆电容电流补偿的迭代算法。该制剂的重点易于实际实施和基于典型的现有系统的数据显示,截至线阻抗和导纳矩阵,并系统负载。一个真正的数据地下配电系统的模拟测试证明了该扩展的改进。该算法的性能呈现可以忽略的故障电阻,距离和开始角度变化的效果。

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