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Transient analysis of lossy transmission lines: an efficient approach based on the method of Characteristics

机译:有损传输线的瞬态分析:基于特征方法的有效方法

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This paper is devoted to transient analysis of lossy transmission lines characterized by frequency-dependent parameters. A public dataset of parameters for three line examples (a module, a board, and a cable) is used, and a new example of on-chip interconnect is introduced. This dataset provides a well established and realistic benchmark for accuracy and timing analysis of interconnect analysis tools. Particular attention is devoted to the intrinsic consistency and causality of these parameters. Several implementations based on generalizations of the well-known method-of-characteristics are presented. The key feature of such techniques is the extraction of the line modal delays. Therefore, the method is highly optimized for long interconnects characterized by significant propagation delay. Nonetheless, the method is also successfully applied here to a short high/loss on-chip line, for which other approaches based on lumped matrix rational approximations can also be used with high efficiency. This paper shows that the efficiency of delay extraction techniques is strongly dependent on the particular circuit implementation and several practical issues including generation of rational approximations and time step control are discussed in detail.
机译:本文致力于以频率相关参数为特征的有损传输线的瞬态分析。使用了三个线路示例(模块,电路板和电缆)的公共参数数据集,并介绍了新的片上互连示例。该数据集为互连分析工具的准确性和时序分析提供了完善的,现实的基准。特别注意这些参数的内在一致性和因果关系。介绍了几种基于众所周知的特征方法的概括的实现。这种技术的关键特征是线路模态延迟的提取。因此,该方法针对具有明显传播延迟的长互连进行了高度优化。然而,该方法在这里也成功地应用于短的高/损耗芯片上生产线,对于该方法,基于集总矩阵有理逼近的其他方法也可以高效地使用。本文表明,延迟提取技术的效率在很大程度上取决于特定的电路实现,并详细讨论了一些实际问题,包括有理逼近的生成和时间步长控制。

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