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Location of double-circuit grounded cross-country faults in GUPFC-compensated transmission lines based on current and voltage phasors analysis

机译:基于电流和电压相量分析的GUPFC补偿传输线的双电路接地越野故障的位置

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摘要

This paper presents an accurate fault location algorithm for double-circuit grounded cross-country (DCGCC) faults in double-circuit transmission lines (DCTLs) compensated by a generalized unified power flow controller (GUPFC). The algorithm incorporates synchronous current and voltage phasors at both end buses of the line. The proposed algorithm determines the accurate location of simultaneous faults occurring in both line circuits in three basic steps. In the first step, the faulty sections are identified using a zero-sequence current analysis. In the second step, the accurate location of a fault in the circuit on which only a series converter is installed is calculated. Next, by employing the calculated zero-sequence current of this fault point, the zero-sequence current component of the other line circuit, which is equipped with series and shunt converters, is obtained. Finally, the accurate fault location in this circuit is calculated. The calculation process and the derived equations for all DCGCC fault types are described in detail. The GUPFC considered in this study along with the test network is modeled in MATLAB/Simulink environment. The simulation results confirm the accurate performance of the proposed algorithm for various fault types occurring in different operating conditions.
机译:本文介绍了在由广义统一潮流控制器(GUPFC)补偿双回线路(DCTLs)双回路接地越野(DCGCC)故障的准确的故障定位算法。该算法在线的两个末端总线中包含同步电流和电压相位。所提出的算法在三个基本步骤中确定在两个线路电路中发生的同时故障的准确位置。在第一步中,使用零序电流分析来识别故障部分。在第二步中,计算电路中的故障的精确位置,仅安装了一个串联转换器。接下来,通过采用该故障点的计算出的零序电流,获得配备有串联和分流转换器的另一线路电路的零序电流分量。最后,计算了该电路中的精确故障位置。详细描述了所有DCGCC故障类型的计算过程和派生方程。在本研究中考虑的GUPFC以及测试网络在Matlab / Simulink环境中建模。仿真结果证实了在不同操作条件下发生的各种故障类型的所提出的算法的准确性能。

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