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The effect of ground resistance on secondary arc current on an EHV transmission line

机译:接地电阻对超高压输电线路二次电弧电流的影响

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After a single-phase-to-ground fault occurs on an extremely-high-voltage transmission line, the duration of the secondary arc mainly depends on the magnitude of the secondary, which is determined by the ground resistance and the system's equivalent impedance at the fault location. In this paper, analytical formulas for calculating the system's equivalent impedance have been developed for three different arc-extinguishing techniques. These formulas show a satisfactory accuracy in comparison with electromagnetic transient program (EMTP) simulations. Then, the effect of the ground resistance on the secondary arc current has been evaluated by comparing it with the system's equivalent impedance. The resistance hardly influences the secondary arc current when no arc-extinguishing facility is adopted or when four-reactor banks are employed; while the resistance significantly affects the current when high-speed grounding switches are used.
机译:在极高电压的输电线路上发生单相接地故障后,次级电弧的持续时间主要取决于次级的大小,次级的大小取决于接地电阻和系统在输入端的等效阻抗。故障位置。在本文中,针对三种不同的消弧技术,开发了用于计算系统等效阻抗的解析公式。与电磁暂态程序(EMTP)仿真相比,这些公式显示出令人满意的精度。然后,通过将其与系统的等效阻抗进行比较,评估了接地电阻对次级电弧电流的影响。当不采用灭弧设备或采用四反应堆时,电阻几乎不会影响次级电弧电流。当使用高速接地开关时,电阻会显着影响电流。

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