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An Effective EMTR-Based High-Impedance Fault Location Method for Transmission Lines

机译:用于传输线的基于EMTR的高阻抗故障定位方法

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This article summarizes the electromagnetic time-reversal (EMTR) technique for fault location, and further numerically validates its effectiveness when the fault impedance is negligible. In addition, a specific EMTR model considering the fault impedance is derived, and the correctness of the model derivation is verified by various calculation methods. Based on this, we found that when the fault impedance is large, the existing EMTR methods might fail to accurately locate the fault. We propose an EMTR method that improves the location effect of high-impedance faults by injecting double-ended signals simultaneously. Theoretical calculations show that this method can achieve an accurate location for high-impedance faults. To further illustrate the effectiveness, the proposed method is compared with the existing EMTR methods and the most commonly used traveling wave-based method using wavelet transform. The simulation results show that the proposed double-ended EMTR method can effectively locate high-impedance faults, and it is more robust against synchronization errors compared with the traveling wave method. In addition, the proposed method does not require the knowledge or a priori guess of the unknown fault impedance.
机译:本文总结了用于故障定位的电磁时间逆转(EMTR)技术,并且在故障阻抗可忽略不计时,进一步数值验证其有效性。另外,导出考虑故障阻抗的特定EMTR模型,并且通过各种计算方法验证了模型推导的正确性。基于此,我们发现当故障阻抗大时,现有的EMTR方法可能无法准确定位故障。我们提出了一种EMTR方法,通过同时注入双端信号来提高高阻抗故障的位置效应。理论计算表明,该方法可以实现高阻抗故障的准确位置。为了进一步说明有效性,将所提出的方法与现有的EMTR方法和使用小波变换的最常用的行波的方法进行比较。仿真结果表明,与行波方法相比,所提出的双端EMTR方法可以有效地定位高阻抗断层,并且对同步误差更加稳健。此外,所提出的方法不需要知识或先验猜测未知故障阻抗。

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