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Optimization algorithm for fault location in transmission lines considering current transformers saturation

机译:考虑电流互感器饱和的输电线路故障位置优化算法

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This paper deals with fault location calculations that use voltages and currents during transient conditions and pre fault values. The method uses transmission line measurements at both terminals and its main contribution is the possibility of fault location even with the lack of some current measurements as in the case of current transformers saturation or even when data acquisition process fails. The equations are based on two-port line representation that can be applied to transposed or untransposed lines and equivalent impedances at the terminals are not needed. With the proposed formulation, the algorithm does not use simplifying assumptions to calculate the fault distance and the fault resistance simultaneously. For phase-to-ground faults, the possibility of lack of accurate current measurement in one CT is assumed. For double phase-to-ground faults and three phase faults, the lack of measurements in two or three CTs, respectively, is also assumed. The results, considering different line configurations and fault types, are presented, showing the accuracy and efficiency of the proposed method.
机译:本文涉及故障位置计算,该故障位置计算在瞬态情况和故障前值期间使用电压和电流。该方法在两个终端都使用传输线测量,其主要作用是即使在电流互感器饱和或数据采集过程失败的情况下,即使缺少一些电流测量,也可以进行故障定位。该等式基于可应用于转置或未转置线的两端口线表示,并且不需要端子处的等效阻抗。使用提出的公式,该算法不会使用简化假设来同时计算故障距离和故障电阻。对于相接地故障,假设在一个CT中可能缺乏准确的电流测量。对于双相接地故障和三相故障,还分别假设在两个或三个CT中缺少测量值。给出了考虑不同线路配置和故障类型的结果,表明了该方法的准确性和效率。

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