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New fault location scheme for three-terminal untransposed parallel transmission lines

机译:三端不换位并联输电线路的新故障定位方案

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This paper proposes a new fault location scheme in the phase-domain for three-terminal untransposed double-circuit transmission lines utilizing synchronized voltage and current measurements obtained by GPS technique. The proposed scheme is derived taking into consideration the distributed line model and the mutual couplings effect between the parallel lines to obtain accurate results. The proposed scheme is derived based on the transmission line theory and Taylor series expansion of the distributed line model parameters. All fault types including normal shunt faults, evolving faults, and cross-country faults can be discriminated from each other and the fault location can be obtained for all fault types. The evolving faults include earth faults occurring at the same location in two phases of one circuit or two phases of different circuits at different fault inception time. While cross-country faults include earth faults occurring at different locations in two phases of one circuit or two phases of different circuits at same or different fault inception time. The proposed scheme is tested under different fault locations, different fault resistances, different fault inception angles, and all fault types including cross-country and evolving faults. Also, the effect of different sampling rate, measurement and synchronization errors, earth resistivity variations, and transmission line parameters errors on the proposed scheme is considered. Simulations studies conducted by MATLAB software demonstrate that the maximum estimation error in fault location does not exceed 3.06%. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文提出了一种利用GPS技术获得的同步电压和电流测量结果的三端不换位双回线输电线路相域故障定位方案。提出的方案是在考虑分布式线路模型和平行线路之间的相互耦合效应的基础上得出的,从而获得了准确的结果。基于传输线理论和分布式线路模型参数的泰勒级数展开,提出了该方案。可以区分所有故障类型,包括正常的并联故障,发展中的故障和越野故障,并且可以获取所有故障类型的故障位置。不断发展的故障包括在一个故障的发生时间在一个电路的两相或不同电路的两相在同一位置发生的接地故障。越野故障包括在同一或不同故障发生时间在一个电路的两相或不同电路的两相的不同位置发生的接地故障。在不同的故障位置,不同的故障电阻,不同的故障起始角度以及所有故障类型(包括越野和不断发展的故障)下,对所提出的方案进行了测试。此外,考虑了不同采样率,测量和同步误差,接地电阻率变化以及传输线参数误差对所提出方案的影响。由MATLAB软件进行的仿真研究表明,故障位置的最大估计误差不超过3.06%。 (C)2017 Elsevier B.V.保留所有权利。

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