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Phasor diagram of a single-phase-ground fault current in a high-resistance grounded power system

机译:高电阻接地电力系统中单相接收电流的相位图

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This paper clarifies the bolted single-phase-ground fault current flow directions and its' phasor diagram for a high-resistance grounded (HRG) power system. The paper clarifies that the system charging current 3I (vector sum of currents from un-faulted phases to ground) flow direction remains unchanged, whereas the same current called the capacitive component of the phase-ground fault current (I) flow is in the reverse direction to 3I. This follows the mathematical relationship, I = - 3I at the fault location and at the power system neutral. Many publications fail to apply this concept to phasor diagrams of phase-ground fault current, showing the phase-ground fault current power factor lagging, with respect to faulted phase-neutral voltage, which is questionable. Other publications, including the IEEE Std. 142-2007 contains figures of HRG systems that do not use the relationship I = - 3I, causing application confusion. This paper recommends use of the relationship I = - 3I for HRG power systems and se of “phasor” instead of “vector” to present phase-ground fault currents with respect to faulted phase-neutral voltage, and faulted phase to two un-faulted phases voltages.
机译:本文阐明了高电阻接地(HRG)电源系统的螺栓固定单相接地故障电流流动方向及其“相位图。纸张阐明了系统充电电流3i(从未断层相到地的电流的矢量和地)流动方向保持不变,而称为相位接地故障电流(i)流的电容分量的电流相同向3i的方向。这遵循数学关系,i = - 3i在故障位置和电力系统中性。许多出版物未能将该概念应用于相位接地故障电流的相位图,示出了相对于断层相位中性电压滞后的相位接地故障电流功率因数,这是可疑的。其他出版物,包括IEEE STD。 142-2007包含不使用I = -3i的关系的HRG系统的数字,从而导致应用混淆。本文建议使用I = -3i的关系I = - 3i,而是“Phasor”而不是“矢量”而不是“向量”来呈现相对于断层相中性电压的相位接地故障电流,以及故障相位到两个未出现的阶段阶段电压。

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