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首页> 外文期刊>IEEE Transactions on Power Delivery >Computation of fault currents and voltages along a multigrounded neutral power line having multiple phase conductors
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Computation of fault currents and voltages along a multigrounded neutral power line having multiple phase conductors

机译:沿具有多相导体的多接地中性线的故障电流和电压的计算

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摘要

A procedure for determining fault voltages and currents along a multiconductor line with a multigrounded neutral conductor is described. The procedure utilizes a conventional open-circuit impedance matrix approach for the representation of the power line at the fault and provides a new method for determining the elements which are derived in terms of basic system parameters and two-port impedances of a neutral ladder network. This network is determined by the grounded neutral conductor of the line in the absence of coupling to the phase conductors. All calculations necessary to obtain the voltages and currents in the specified multiconductor geometry are shown to be confined to this neutral ladder. As an example, an analysis of a faulted, double-fed, three-phase line is provided.
机译:描述了确定具有多接地中性导体的多导体线上的故障电压和电流的过程。该程序利用常规的开路阻抗矩阵方法来表示故障处的电源线,并提供了一种新的方法来确定根据基本系统参数和中性梯形网络的两端口阻抗得出的元素。该网络由线路的接地中性导体确定,而没有与相导体的耦合。显示在指定的多导体几何形状中获得电压和电流所需的所有计算都限于该中性阶梯。作为示例,提供了故障双馈三相线路的分析。

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