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首页> 外文期刊>Electric Power Components and Systems >A Fault Location Algorithm for Two-End Series-Compensated Double-Circuit Transmission Lines Using the Distributed Parameter Line Model
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A Fault Location Algorithm for Two-End Series-Compensated Double-Circuit Transmission Lines Using the Distributed Parameter Line Model

机译:基于分布参数线模型的两端串联补偿双回路输电线路故障测距算法

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摘要

A new fault location algorithm for two-end series-compensated double-circuit transmission lines utilizing unsynchro-nized two-terminal current phasors and local voltage phasors is presented in this paper. The distributed parameter line model is adopted to take into account the shunt capacitance of the lines. The mutual coupling between the parallel lines in the zero-sequence network is also considered. The boundary conditions under different fault types are used to derive the fault location formulation. The developed algorithm directly uses the local voltage phasors on the line side of series compensation (SC) and metal oxide varistor (MOV). However, when potential transformers are not installed on the line side of SC and MOVs for the local terminal, these measurements can be calculated from the local terminal bus voltage and currents by estimating the voltages across the SC and MOVs. MATLAB SimPowerSystems is used to generate cases under diverse fault conditions to evaluating accuracy. The simulation results show that the proposed algorithm is qualified for practical implementation.
机译:提出了一种采用非同步化的两端电流相量和局部电压相量的两端串联补偿双回路输电线路故障定位新算法。考虑到线路的并联电容,采用分布式参数线路模型。还考虑了零序网络中平行线之间的相互耦合。利用不同断层类型下的边界条件推导断层位置公式。所开发的算法直接使用串联补偿(SC)和金属氧化物压敏电阻(MOV)线路侧的局部电压相量。但是,当在本地端子的SC和MOV的线路侧未安装电压互感器时,可以通过估算SC和MOV两端的电压,从本地端子总线电压和电流中计算出这些测量值。 MATLAB SimPowerSystems用于在各种故障条件下生成案例以评估准确性。仿真结果表明,该算法是可行的。

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