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An Investigation of Direct Grounding System Effect on Modeling of Lightning and Tower in Transmission Line

机译:直接接地系统对输电线路防雷塔建模影响的研究

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Lightning strikes on transmission lines can cause disruption of electrical supply. A lightning strike directly to the ground wire or the tower may result voltage rise on installed insulator at the tower. If the voltage arising on the insulator is the same or exceed the line of Critical Flashover Voltage (CFO) then there will be phenomena called back flashover. In this work, a direct conductor are installed directly from ground wire point at the top of transmission tower to ground. Several simulations are carried out to determine the conditions that may occur in a model of 150 kV transmission as to lightning strikes directly at the top of the tower, the simulation was carried out by using ATP Draw 3.8. After simulating and voltage profiles were obtained. The work was continued by analyzing the effect of the proposed additional conductor at tower to determine voltage across on the insulator that exceeds CFO. The comparison is made for the voltage profile during lightning strike for tower with and without direct conductor to ground to ensure the effectiveness of the method.
机译:传输线上的雷击会导致电源中断。雷电直接击中接地线或塔架可能会导致塔架上安装的绝缘子上的电压升高。如果绝缘子上产生的电压等于或超过临界闪络电压(CFO)线,则将出现称为反闪络的现象。在这项工作中,直接导体从输电塔顶部的接地线点直接安装到地面。进行了几次仿真,以确定在150 kV输电模型中直接发生在塔架顶部的雷击的情况,该仿真是使用ATP Draw 3.8进行的。经过仿真并获得了电压曲线。通过分析建议的塔架附加导体的影响来确定绝缘体上超过CFO的电压,可以继续进行这项工作。比较了在有和没有直接导体接地的情况下塔的雷击期间的电压分布,以确保该方法的有效性。

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