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首页> 外文期刊>IEEE Transactions on Power Delivery >Parallel Transmission Lines Fault Location Algorithm Based on Differential Component Net
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Parallel Transmission Lines Fault Location Algorithm Based on Differential Component Net

机译:基于差分分量网络的并行输电线路故障测距算法

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This paper presents a novel time-domain fault location algorithm for parallel transmission lines using two terminal currents. Parallel transmission lines with faults can be decoupled into the common component net and differential component net. Since the differential component net is only composed of the parallel lines and its terminal voltages equal zero, the proposed algorithm is based on the fact that the difference between voltage distributions, calculated from two terminal currents, is the smallest at fault point. To be practical, unsynchronized data and the transient transferring ability of the current transformer are taken into consideration. The algorithm needs a very short data window, and any segment of current data can be used to locate faults. The proposed algorithm is verified successfully using the simulation data generated by the frequency-dependent line model of the Alternative Transients Program and the field recording data provided by traveling-wave fault locators. Locating results show the satisfactory accuracy of the algorithm for various fault types, fault distances, and fault resistances.
机译:本文提出了一种使用两个终端电流的并行传输线时域故障定位算法。带有故障的并行传输线可以解耦为公共分量网和差分分量网。由于差分分量网络仅由平行线组成,并且其端电压等于零,因此该算法基于以下事实:由两个端电流计算出的电压分布之间的差异在故障点处最小。实际上,考虑了不同步数据和电流互感器的瞬态传递能力。该算法需要一个非常短的数据窗口,并且可以使用当前数据的任何段来定位故障。该算法通过使用备用暂态程序的频率相关线模型生成的仿真数据以及行波故障定位仪提供的现场记录数据成功地进行了验证。定位结果表明,该算法对于各种故障类型,故障距离和故障电阻具有令人满意的精度。

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