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Fault Location Method Based on Single-End Measurements for Underground Cables

机译:基于单端测量的地下电缆故障定位方法

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摘要

The fault location in underground cables is characterized as the technical difficulties due to complexities in cables. Based on the direct circuit analysis, a fault location algorithm for underground cables with no laterals is presented in this paper. The single-end phasor measurements, including the voltages and currents sampled in the substation side, are utilized to locate the single phase faults in the typical single-conductor cross-linked polyethylene (XLPE) cables rated at the medium voltage (MV) levels. The distinctive cable characteristics are considered, such as relatively large capacitance, effects of sheaths and sheath bonding methods. The different fault scenarios are taken into account as well. The effect of changes of cable parameters and application of static response load model are also investigated. The simulation studies demonstrate the proposed algorithm can achieve the high accuracy under various system and fault conditions.
机译:由于电缆的复杂性,地下电缆的故障定位是技术难题。在直接电路分析的基础上,提出了一种无分支的地下电缆故障定位算法。单端相量测量(包括在变电站侧采样的电压和电流)用于确定额定为中压(MV)级别的典型单导体交联聚乙烯(XLPE)电缆中的单相故障。考虑了独特的电缆特性,例如相对较大的电容,护套的影响和护套粘合方法。还考虑了不同的故障情况。还研究了电缆参数变化的影响以及静态响应载荷模型的应用。仿真研究表明,该算法在各种系统和故障条件下都能达到较高的精度。

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