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Transient analysis of three-phase transmission lines with initial voltage and current distributions

机译:具有初始电压和电流分布的三相传输线的瞬态分析

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An efficient numerical inverse Laplace transformation algorithm is proposed for the transient analysis of a three-phase transmission line with arbitrary initial voltage and current distributions (known as the initial conditions) on the line. We apply the Laplace transformation to the transmission line equations and obtain the equivalent two-port admittance matrix with current generators connected to the transmission line terminals which account for the initial conditions. The distributed nature of the transmission line makes the two-port admittance matrix and the current generators irrational functions of the complex frequency, which can be approximated by the Taylor series expansions. The phase voltages and phase currents on the transmission line can then be obtained as rational functions of the complex frequency. The numerical inverse Laplace transformation can be applied to obtain the time domain waveforms.
机译:提出了一种高效的数值拉普拉斯逆变换算法,用于对三相输电线路的任意初始电压和电流分布(称为初始条件)进行瞬态分析。我们将拉普拉斯变换应用于输电线路方程,并获得等效的两端口导纳矩阵,其中电流发生器连接至输电线路终端,这考虑了初始条件。传输线的分布特性使两端口导纳矩阵和电流发生器的复数频率不合理,这可以通过泰勒级数展开来近似。然后,可以将传输线上的相电压和相电流作为复数频率的有理函数来获得。可以将数值拉普拉斯逆变换应用于时域波形。

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