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A Novel Fault Location Method for a Cross-Bonded HV Cable System Based on Sheath Current Monitoring

机译:基于护套电流监测的交叉电缆高压电缆系统故障定位新方法

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摘要

In order to improve the practice in the operation and maintenance of high voltage (HV) cables, this paper proposes a fault location method based on the monitoring of cable sheath currents for use in cross-bonded HV cable systems. This method first analyzes the power–frequency component of the sheath current, which can be acquired at cable terminals and cable link boxes, using a Fast Fourier Transform (FFT). The cable segment where a fault occurs can be localized by the phase difference between the sheath currents at the two ends of the cable segment, because current would flow in the opposite direction towards the two ends of the cable segment with fault. Conversely, in other healthy cable segments of the same circuit, sheath currents would flow in the same direction. The exact fault position can then be located via electromagnetic time reversal (EMTR) analysis of the fault transients of the sheath current. The sheath currents have been simulated and analyzed by assuming a single-phase short-circuit fault to occur in every cable segment of a selected cross-bonded high voltage cable circuit. The sheath current monitoring system has been implemented in a 110 kV cable circuit in China. Results indicate that the proposed method is feasible and effective in location of HV cable short circuit faults.
机译:为了改进高压(HV)电缆的操作和维护实践,本文提出了一种基于监视交叉护套高压电缆系统中使用的电缆护套电流的故障定位方法。该方法首先使用快速傅立叶变换(FFT)分析护套电流的功率-频率分量,该电流可以在电缆端子和电缆接线盒处获取。发生故障的电缆段可以通过电缆段两端的护套电流之间的相位差来定位,因为电流会以相反的方向流向有故障的电缆段的两端。相反,在同一电路的其他健康电缆段中,护套电流将沿相同方向流动。然后,可以通过对护套电流的故障瞬变进行电磁时间反转(EMTR)分析来确定确切的故障位置。通过假设在选定的交叉连接高压电缆电路的每个电缆段中都发生单相短路故障,来模拟和分析护套电流。护套电流监控系统已在中国的110 kV电缆电路中实施。结果表明,该方法对高压电缆短路故障的定位是可行和有效的。

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