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A Phasor-Based Double Ended Fault Location Scheme for Aged Power Cables

机译:基于相量的老年电力电缆双端故障定位方案

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This paper presents a fault location scheme for aged power cables using phasor measurements from both ends of the cable line. The proposed fault location scheme is derived using two-terminal measurements incorporated with a distributed line model, modal transformation theory, and discrete Fourier transforms. The proposed scheme can solve the problem of cable changing parameters, especially the change of the relative permittivity and thus for the operating positive, negative, and zero sequence capacitance changes. Extensive simulation studies are carried out using the alternative transients program ATP/EMTP. The simulation studies show that the proposed scheme provides a high accuracy in fault location calculations under various system and fault conditions. The results show that the proposed method responds very well, being insensitive to fault type, fault distance, fault resistance, and fault inception angle. The proposed scheme solves the problem of aged cables with change of electric parameters. In addition, it gives an accurate estimation of the fault resistance in all fault types.
机译:本文通过电缆两端的相量测量,提出了一种老化电力电缆的故障定位方案。所提出的故障定位方案是通过结合分布式线路模型,模态变换理论和离散傅里叶变换的两端测量得出的。所提出的方案可以解决电缆改变参数的问题,特别是相对介电常数的改变,从而解决了工作中正序,负序和零序电容的变化。使用替代瞬态程序ATP / EMTP进行了广泛的仿真研究。仿真研究表明,该方案在各种系统和故障条件下的故障定位计算中具有很高的准确性。结果表明,该方法对故障类型,故障距离,故障电阻和故障起始角度均不敏感。该方案解决了电参数变化引起的电缆老化问题。此外,它还可以准确估算所有故障类型中的故障电阻。

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