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首页> 外文期刊>Electromagnetic Compatibility, IEEE Transactions on >A Delay-Rational Model of Lossy Multiconductor Transmission Lines With Frequency-Independent Per-Unit-Length Parameters
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A Delay-Rational Model of Lossy Multiconductor Transmission Lines With Frequency-Independent Per-Unit-Length Parameters

机译:具有频率独立单位长度参数的有损多导体传输线的延迟比模型

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摘要

Cables, printed circuit boards, and VLSI interconnects are commonly modeled as multiconductor transmission lines. Models of electrically long transmission lines are memory and time consuming. In this paper, a robust and efficient algorithm for the generation of a delay-based model is presented. The impedance representation via the open-end matrix is analyzed. In particular, the rational formulation of in terms of poles and residues is exploited for both lossless and lossy cases. The delays of the lines are identified, and explicitly incorporated into the model. A model order reduction of the system is automatically performed, since only a limited number of poles and residues are included in the rational part of the model, whereas the high-frequency behavior is captured by means of closed expressions that account for the delays. The proposed method is applied to two relevant examples and validated through the comparison with reference methods. The time-domain solver is found to be more accurate and significantly faster than the one obtained from a pure-rational model.
机译:电缆,印刷电路板和VLSI互连通常被建模为多导体传输线。长电传输线的模型需要大量内存和时间。在本文中,提出了一种鲁棒且高效的算法,用于生成基于延迟的模型。分析了通过开放式矩阵的阻抗表示。特别是,无论是在无损还是有损情况下,都采用了极点和残渣方面的合理表述。识别线路的延迟,并将其明确纳入模型中。由于模型的有理部分仅包含有限数量的极点和残基,因此系统会自动执行模型降阶操作,而高频行为则通过考虑延迟的封闭表达式来捕获。将该方法应用于两个相关实例,并与参考方法进行了比较验证。发现时域求解器比从纯理性模型中获得的解算器更准确且显着更快。

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