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Modeling and characterization of multiple coupled lines.

机译:多条耦合线的建模和表征。

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摘要

A configuration-oriented circuit model for multiple coupled lines in an inhomogeneous medium is developed and presented in this thesis. This circuit model consists of a network of uncoupled transmission lines and is readily modeled with simulation tools like LIBRA(c) and SPICE (c). It provides an equivalent circuit representation which is simple and topologically meaningful as compared to the model based on modal decomposition. The configuration-oriented model is derived by decomposing the immittance matrices associated with an n coupled line 2n-port system. Time- and frequency-domain simulations of typical coupled line multiports are included to exemplify the utility of the model. The model is useful for the simulation and design of general single and multilayer coupled line components, such as filters and couplers, and for the investigation of signal integrity issues including crosstalk in interconnects associated with high speed digital and mixed signal electronic modules and packages.; It is shown that multiconductor lossless structures in an inhomogeneous medium can be characterized by multiport time-domain reflection (MR) measurements. A synthesis technique of an equivalent lossless (non-dispersive) uniform multiconductor n coupled lines (UMCL) 2n-port system from the measured discrete time-domain reflection response is presented. This procedure is based on the decomposition of the characteristic immittance matrices of the UMCL in terms of partial mode immittance matrices. The decomposition scheme leads to the discrete transition matrix function of a UMCL 2n-port system. This in turn establishes a relationship between the normal-mode parameters of the UMCL and the measured impulse reflection and transmission response. Equivalence between the synthesis procedure presented in this thesis and the solution of a special form of an algebraic Riccati matrix equation whose solution can lead to the normal-mode parameters and a real termination network is illustrated. In order to demonstrate the procedure, a typical microstrip structure with three lines is synthesized from the time-domain reflection (TDR) data.; In order to compliment known field theoretic techniques for characterization of multiconductor structures a network analog method is employed to solve the magnetic vector potential equation to characterize multilayer Metal-Insulator-Semiconductor (NGS) transmission line structures. This approach leads to the frequency dependent distributed inductance and the resistance matrices of a multilayer MIS transmission line structure. It is shown that the frequency dependent transmission line parameters can be modeled by an efficient quasi-static formulation for all propagating modes including the slow-wave and skin-effect modes. To demonstrate the proposed approach for single and multilevel structures, the frequency dependent distributed inductance and resistance matrices corresponding to the propagating modes classified as the slow-wave and skin-effect modes are calculated and validated by comparison with full-wave solutions.
机译:本文提出并提出了一种非均匀介质中多耦合线路面向配置的电路模型。该电路模型由未耦合的传输线网络组成,可以轻松地使用LIBRA(c)和SPICE(c)等仿真工具进行建模。与基于模态分解的模型相比,它提供的等效电路表示简单且在拓扑上有意义。面向配置的模型是通过分解与n个耦合线2n端口系统关联的阻抗矩阵得出的。包括典型耦合线路多端口的时域和频域仿真,以例证该模型的实用性。该模型可用于仿真和设计一般的单层和多层耦合线组件,例如滤波器和耦合器,以及用于调查信号完整性问题,包括与高速数字和混合信号电子模块和封装相关的互连中的串扰。结果表明,非均质介质中的多导体无损结构可以通过多端口时域反射(MR)测量来表征。提出了一种基于测量的离散时域反射响应的等效无损(非色散)均匀多导体n耦合线(UMCL)2n端口系统的合成技术。此过程基于UMCL的特征导纳矩阵根据部分模式导纳矩阵的分解。分解方案导致UMCL 2n端口系统的离散转移矩阵函数。这继而在UMCL的正常模式参数与所测得的脉冲反射和传输响应之间建立关系。本文提出的合成程序与代数Riccati矩阵方程的一种特殊形式的解之间的等价关系,其解可以导致正态参数,并给出了一个实际的终止网络。为了演示该过程,从时域反射(TDR)数据合成了具有三条线的典型微带结构。为了补充用于表征多导体结构的已知场理论技术,采用网络模拟方法来求解磁矢量势方程,以表征多层金属-绝缘体-半导体(NGS)传输线结构。该方法导致多层MIS传输线结构的频率相关的分布电感和电阻矩阵。结果表明,对于所有传播模式,包括慢波模式和趋肤效应模式,可以通过有效的准静态公式对频率相关的传输线参数进行建模。为了证明所提出的单层和多层结构方法,通过与全波解决方案比较,计算并验证了与传播模式(慢波和趋肤效应模式)相对应的频率相关的分布电感和电阻矩阵。

著录项

  • 作者

    Tripathi, Alok.;

  • 作者单位

    Oregon State University.;

  • 授予单位 Oregon State University.;
  • 学科 Engineering Electronics and Electrical.; Physics Electricity and Magnetism.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 105 p.
  • 总页数 105
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;电磁学、电动力学;
  • 关键词

  • 入库时间 2022-08-17 11:48:24

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