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

机译:高阻接地电力系统中单相接地故障电流的相量图

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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)电力系统的螺栓连接的单相接地故障电流流向及其相量图。本文明确指出,系统充电电流3I(从无故障相到地的电流的矢量和)的流向保持不变,而称为相接地故障电流(I)的电容性分量的电流却相反指向3I的方向。这遵循故障位置和电力系统中性点处的数学关系式,I =-3I。许多出版物未能将这一概念应用于相接地故障电流的相量图,表明相接地故障电流的功率因数相对于有故障的相中性电压而言是滞后的,这值得怀疑。其他出版物,包括IEEE标准。 142-2007包含不使用关系I =-3I的HRG系统的图,从而导致应用程序混乱。本文建议对HRG电力系统使用I =-3I的关系,并使用“相量”而不是“向量”来表示相对于有故障的相中性电压的相接地故障电流,以及针对两个未故障的相故障电流相电压。

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