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An Efficient Implementation of the Agrawal Model for Lightning-Induced Voltage Calculations Using Circuit Simulation Software

机译:用电路仿真软件有效地计算雷电感应电压的总模型

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One of the popular, simple, and accurate field-to-wire coupling models for studying transmission-line lightning interaction is the Agrawal model . In this model, the coupling mechanisms are represented by distributed sources along the line, wherein each distributed source is due to the horizontal component of the illuminating electric field at that point on the line. These sources give rise to the propagating scattered voltage along the line, while the total voltage at any instant at a given point along the line is the sum of scattered voltage and the voltage at that point due to the illuminating vertical component of the electric field. There is a difficulty in applying the Agrawal model with the built-in transmission-line models of various circuit simulation software such as the Alternate Transients Program–Electromagnetic Transients Program , PSpice , Simpow , PSS/E , etc., as the voltage source due to the horizontal component of the electric field in the Agrawal model is in series with the line impedance , and not in between two transmission-line segments. In this paper, a simple circuit approach for efficient implementation of the Agrawal model using any circuit simulation software that has built-in transmission-line models is proposed.
机译:用于研究传输线雷电相互作用的流行,简单且准确的场线耦合模型之一是Agrawal模型。在此模型中,耦合机制由沿线的分布式源表示,其中每个分布式源均归因于在线上该点处照明电场的水平分量。这些源会产生沿线路传播的​​散射电压,而沿线路给定点的任何时刻的总电压是散射电压与该点的电压之和,这是由于电场的垂直照明分量引起的。将Agrawal模型与各种电路仿真软件的内置传输线模型(如备用瞬态程序-电磁瞬态程序,PSpice,Simpow,PSS / E等)一起用作电压源存在困难Agrawal模型中电场的水平分量与线阻抗串联,而不是在两个传输线段之间。在本文中,提出了一种简单的电路方法,该方法可使用具有内置传输线模型的任何电路仿真软件有效地实现Agrawal模型。

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