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Electrical power systems fault location with one-terminal data using estimated remote source impedance

机译:使用估计的远程电源阻抗通过单端数据进行电力系统故障定位

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In this study, a fault location algorithm for electrical power systems is presented. The proposal consists in an accurate impedance-based fault location algorithm by utilizing voltage and current measurements from local terminal and estimated remote source impedance. In order to evaluate the fault location algorithm a numerical analysis is made. Phase-to-ground faults are simulated in a 230 kV Brazilian transmission line using the software ATP/EMTP and MATLAB. The algorithm is tested considering the fault distance, fault resistance, and the variation of short-circuit capacity of remote system effects. The results show that the fault resistance and fault distance affect the estimated fault distance, but with minor errors. More, the proposed algorithm is not sensitive to the remote system short-circuit capacity variation.
机译:在这项研究中,提出了一种电力系统的故障定位算法。该建议包括通过利用来自本地端子的电压和电流测量值以及估计的远程电源阻抗,来实现基于阻抗的精确故障定位算法。为了评估故障定位算法,进行了数值分析。使用软件ATP / EMTP和MATLAB在230 kV巴西输电线路中模拟相接地故障。测试该算法时考虑了故障距离,故障电阻以及远程系统影响的短路容量的变化。结果表明,故障电阻和故障距离影响估计的故障距离,但误差较小。此外,所提出的算法对远程系统的短路容量变化不敏感。

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