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Fast & adaptive fault location technique for three-terminal lines

机译:三端子线的快速自适应故障定位技术

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摘要

This paper presents a fast and adaptive method to locate faults in three-terminal transmission lines, based on the synchronized measurements within the half-cycle data window. First, the voltage and current data are processed by two sets of half-cycle Fourier filters at three terminals in order to extract the main component of the voltage and current phasors quickly and with a high accuracy using a novel method. The proposed algorithm uses the calculated phasors and works without any need to transmission lines data or the Thevenin equivalent of the system at each terminal. For making sure of considering the real operation conditions of the network, transmission line's parameters are determined adaptively using the calculated phasors. The voltage at the tapping point is calculated separately using three-terminal data and consequently the faulty section is identified and then, the precise location of fault in the faulty section is accurately calculated using the nodal current unbalance method. Performance of the proposed algorithm is evaluated under different fault conditions. The simulation results show the high convergence speed and the excellent accuracy of the proposed method under various operating conditions and various fault types.
机译:本文提出了一种基于半周期数据窗口内同步测量的快速自适应方法来定位三端传输线中的故障。首先,通过在三个端子处的两组半周期傅里叶滤波器处理电压和电流数据,以便使用一种新颖的方法快速,高精度地提取电压和电流相量的主要成分。所提出的算法使用计算出的相量,并且无需在每个终端传输线路数据或系统的戴维南等效项即可工作。为了确保考虑网络的实际运行状况,使用计算出的相量自适应地确定传输线的参数。使用三端数据分别计算出分接点处的电压,从而确定故障部分,然后使用节点电流不平衡方法准确计算故障在故障部分中的精确位置。在不同的故障条件下,对所提算法的性能进行了评估。仿真结果表明,该方法在各种工况和故障类型下均具有较高的收敛速度和较高的精度。

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