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Automated construction of macromodels from frequency data for simulation of distributed interconnect networks.

机译:从频率数据自动构建宏模型,以仿真分布式互连网络。

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摘要

As the complexity of interconnects and packages increases and the rise and fall time of the signal decreases, the electromagnetic effects of distributed passive devices are becoming an important factor in determining the performance of gigahertz systems. The electromagnetic behavior extracted using an electromagnetic simulation or from measurements is available as frequency dependent data. This information can be represented as a black box called a macromodel, which captures the behavior of the passive structure at the input/output ports. In this dissertation, the macromodels have been categorized as scalable, passive and broadband macromodels. The scalable macromodels for building design libraries of passive devices have been constructed using multidimensional rational functions, orthogonal polynomials and selective sampling. The passive macromodels for time-domain simulation have been constructed using filter theory and multiport passivity formulae. The broadband macromodels for high-speed simulation have been constructed using band division, selector, subband reordering, subband dilation and pole replacement. An automated construction method has been developed. The construction time of the multiport macromodel has been reduced. A method for reducing the order of the macromodel has been developed. The efficiency of the methods was demonstrated through embedded passive devices, known transfer functions and distributed interconnect networks.
机译:随着互连和封装的复杂性增加以及信号的上升和下降时间减少,分布式无源器件的电磁效应正成为决定千兆赫系统性能的重要因素。使用电磁仿真或从测量中提取的电磁行为可用作频率相关数据。此信息可以表示为一个称为宏模型的黑匣子,该宏模型捕获输入/输出端口上无源结构的行为。本文将宏模型分为可扩展,无源和宽带宏模型。使用多维有理函数,正交多项式和选择性采样已构建了用于构建无源设备设计库的可伸缩宏模型。使用滤波器理论和多端口无源公式,构建了用于时域仿真的无源宏模型。使用频带划分,选择器,子带重新排序,子带扩张和极点替换构建了用于高速仿真的宽带宏模型。已经开发了一种自动施工方法。多端口宏模型的构建时间已减少。已经开发出一种用于减少宏模型的阶数的方法。通过嵌入式无源设备,已知的传递函数和分布式互连网络证明了该方法的效率。

著录项

  • 作者

    Min, Sung-Hwan.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 175 p.
  • 总页数 175
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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