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Analysis of lightning-induced current and voltages on 500 kV EHV double circuit transmission lines of type DL3/spl deg/ and DT 20/spl deg/ in lightning protection system

机译:防雷系统中DL3 / spl deg /和DT 20 / spl deg /型的500 kV EHV双回路输电线路的雷电感应电流和电压分析

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This paper presents a method to consider of the current and voltage induced on 500 kV EHV double circuit transmission lines of type DL3/spl deg/ and DT 20/spl deg/ in lightning protection system. These analyses are based on modeling lightning return stroke as well as on coupling the electromagnetic fields of the stroke channel to the line. The ground conductivity influences both the electric field as well as the coupling mechanism and hence the magnitude and wave shape of the induced voltage. The presence of other conductors affects the induced voltage of a conductor, the analysis of current and voltage induced on an overhead line by lightning strokes to nearby ground. The simulation results show that this study analyses for assuming ground as a perfect conductor and for the stabilization of estimating such lightning induced outages of a long distance power transmission system.
机译:本文提出了一种在雷电保护系统中考虑DL3 / spl deg /和DT 20 / spl deg /类型的500 kV EHV双回路输电线路上感应的电流和电压的方法。这些分析基于对雷击回程进行建模以及将雷击通道的电磁场耦合到线路上。接地电导率会影响电场以及耦合机制,从而影响感应电压的大小和波形。其他导体的存在会影响导体的感应电压,并通过对附近地面的雷击来分析架空线上感应的电流和电压。仿真结果表明,该研究分析了将地面假设为理想导体并为估计此类雷电造成的长距离输电系统中断的稳定性。

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