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首页> 外文期刊>IEEE Transactions on Power Delivery >A Revised Model for Calculating HV Cable Sheath Current Under Short-Circuit Fault Condition and Its Application for Fault Location—Part 1: The Revised Model
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A Revised Model for Calculating HV Cable Sheath Current Under Short-Circuit Fault Condition and Its Application for Fault Location—Part 1: The Revised Model

机译:短路故障条件下高压电缆护套电流的修正模型及其在故障定位中的应用-第1部分:修正模型

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摘要

This two-part paper proposes a revised method for calculating high voltage (HV) cable sheath currents, and for fault location of cross-bonded HV cable systems. The equivalent circuit and the cable impedance per unit length under short-circuit fault conditions are revised from those under non-fault conditions. Part 1 of this paper proposes a revised phasor domain mathematical model for the sheath current calculation under fault conditions, following demonstration that short-circuit faults can cause changes in the equivalent circuit of the cable metal sheath, and cause changes in the cable impedance per unit length. The calculation results, as given in a case study, show that there exists a unique relation between the fault position and the sheath fault currents, making it possible to locate a fault by analyzing the characteristics of the sheath currents during a fault. Part 2 of the paper focuses on the fault location method via sheath current monitoring.
机译:这份由两部分组成的论文提出了一种修正的方法,用于计算高压(HV)电缆护套电流以及交叉粘结HV电缆系统的故障定位。短路故障条件下的等效电路和单位长度的电缆阻抗从非故障条件下的等效电路和电缆阻抗进行了修改。本文的第1部分提出了一个修正的相量域数学模型,用于在故障条件下计算护套电流,随后证明了短路故障会导致电缆金属护套的等效电路发生变化,并导致每单位电缆的阻抗发生变化长度。通过案例研究得出的计算结果表明,故障位置与护套故障电流之间存在唯一关系,从而可以通过分析故障期间的护套电流特性来定位故障。本文的第2部分重点介绍通过护套电流监控的故障定位方法。

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