Phase-domain transmission circuit model for electromagnetic transient analysis-representation of characteristic impedance matrix by a passive network

T. T. Nguyen, V. Nguyen, B. N. Nguyen
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引用次数: 4

Abstract

In the context of modeling in the phase-domain multi-conductor distributed-parameter transmission circuit for electromagnetic transient analysis performed in the discrete time domain, the paper develops a method based on passive network synthesis for representing the nonlinear frequency dependence of the characteristic impedance matrix function. The synthesized passive network of interconnected RLC elements preserves at any frequency the inherent stability property of this matrix function for any power transmission circuit. The network parameters are identified using the constrained optimization by which the synthesized network response is matched with the actual response derived from the characteristic impedance matrix. With the trapezoidal rule of numerical integration applied to individual elements of the synthesized network, discrete time-domain recursive sequences are derived, and then included in the overall transmission circuit model. The network synthesis procedure developed is applied to a representative transmission line, and comparative studies indicate high accuracy being achieved.
电磁暂态分析的相域传输电路模型——无源网络特征阻抗矩阵的表示
针对相域多导体分布参数传输电路的离散时域瞬变分析建模问题,提出了一种基于无源网络综合的特征阻抗矩阵函数的非线性频率依赖性表示方法。互连RLC元件的合成无源网络在任何频率下都保持了该矩阵函数对任何输电电路固有的稳定性。采用约束优化方法对网络参数进行辨识,使网络的综合响应与由特征阻抗矩阵导出的实际响应相匹配。将数值积分的梯形法则应用于合成网络的各个单元,推导出离散的时域递推序列,并将其纳入整个传输电路模型。将所开发的网络综合程序应用于具有代表性的传输线,对比研究表明,所开发的网络综合程序具有较高的精度。
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