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Analysis of Lightning-Induced Voltages on Overhead Lines Using a 2-D FDTD Method and Agrawal Coupling Model

机译:使用二维FDTD方法和总体耦合模型分析架空线上的雷电感应电压

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In this paper, the lightning-generated electromagnetic fields over lossy ground produced by lightning strikes either to flat ground or to a tall tower are calculated using the 2-D finite-difference time-domain (FDTD) method. The resultant horizontal and vertical electric fields are used as forcing functions in the discretized Agrawal electromagnetic coupling equations for the calculation of induced voltages on overhead horizontal conductors without employing the Cooray–Rubinstein formula. Comparison of the results with those obtained using the 3-D FDTD method and with experimental data found in the literature is used to test the validity of the examined method. The approach employed here generally provides sufficient accuracy while allowing significant reduction in computation time and storage requirements as compared to the 3-D FDTD method. From the analysis carried out in this paper, induced voltages appear to be strongly dependent on ground conductivity, somewhat influenced by return-stroke speed, and essentially independent of return-stroke model [transmission-line (TL), modified transmission line with linear current decay with height (MTLL), or modified transmission line with exponential current decay with height (MTLE)].
机译:在本文中,使用二维有限差分时域(FDTD)方法来计算雷击在平坦地面或高塔上在有损地面上产生的雷电电磁场。合成的水平和垂直电场在离散的Agrawal电磁耦合方程式中用作强迫函数,无需使用Cooray-Rubinstein公式即可计算架空水平导体上的感应电压。将结果与使用3-D FDTD方法获得的结果以及文献中的实验数据进行比较,以检验所检验方法的有效性。与3-D FDTD方法相比,此处采用的方法通常可提供足够的精度,同时可显着减少计算时间和存储要求。从本文进行的分析来看,感应电压似乎强烈依赖于地面电导率,在一定程度上受回程速度的影响,并且基本上独立于回程模型[传输线(TL),带有线性电流的修改传输线随高度衰​​减(MTLL),或经过修改的传输线随高度随指数衰减(MTLE)]。

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