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Alternative method using recursive convolution for electromagnetic transient analysis in balanced overhead transmission lines

机译:使用递归卷积的替代方法,用于平衡架空传输线路电磁瞬态分析

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摘要

This study proposes an alternative method to calculate the transient responses of multi-conductor overhead transmission lines based on ABCD representation, recursive convolutions and numerical method for rational approximation in the frequency-dependent curves. In the classical universal line model, the characteristic admittance matrix Y-c(omega) and propagation matrix H(omega) are represented by rational functions. In H(omega), previous and correct identification of the modal travelling times is required. However, these modal travelling times are estimated numerically, which do not offer good accuracy in some cases. This fact has a considerable effect on the rational representation of H(omega) itself and consequently on the transient responses. In the alternative method, a previous estimation of the modal travel times is unnecessary because when using the ABCD representation for each propagation mode, a direct relation exists between the currents and tensions of the receiving and sending ends. These relationships are fitted by smooth rational functions, and then, using recursive convolution methods, the authors obtain the explicit equations of the currents and voltages to calculate the transient responses. The results demonstrate that the alternative method is accurate when compared with the frequency-domain solution of the transmission line transformed to the time domain using the numeric Laplace transform and with the Bergeron method.
机译:本研究提出了一种替代方法,用于基于ABCD表示,递归卷积和数值方法计算多导体架空传输线的瞬态响应,用于在频率相关曲线中的合理近似。在经典的通用线模型中,特征导纳矩阵Y-C(OMEGA)和传播矩阵H(OMEGA)由Rational函数表示。在H(OMEGA)中,需要先前并正确识别模态行程时间。然而,这些模态行驶时间在数值上估计,在某些情况下,在某些情况下不提供良好的准确性。这一事实对H(Omega)本身的合理表示以及因此对瞬态反应有相当大的影响。在替代方法中,不需要先前估计模态行程时间的估计,因为当使用对每个传播模式的ABCD表示时,存在于接收和发送端的电流和张力之间的直接关系。这些关系通过平滑的合理功能拟合,然后,使用递归卷积方法,作者获得了电流和电压的显式方程,以计算瞬态响应。结果表明,与使用数字拉普拉斯变换和Bergeron方法相比,替代方法与变换到时域的传输线的频域解相比是准确的。

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