期刊文献+

Equivalent Pi-Network Model of Lossy and Dispersive Coupled Transmission Lines

Equivalent Pi-Network Model of Lossy and Dispersive Coupled Transmission Lines
原文传递
导出
摘要 An equivalent circuit representation is presented for a set of coupled transmission lines. An ap- proximation of the hyperbolic secant function allows a simple derivation of a staged model that accounts for the complex frequency dependent parameters. The model converts the T-ladder network into a i-r-network with controlled sources. The equivalent circuit based approach presented here is not only intriguing but also enhances the computed accuracy and efficiency. Numerical simulations verify the accuracy of this approach for both time and frequency domain responses. An equivalent circuit representation is presented for a set of coupled transmission lines. An ap- proximation of the hyperbolic secant function allows a simple derivation of a staged model that accounts for the complex frequency dependent parameters. The model converts the T-ladder network into a i-r-network with controlled sources. The equivalent circuit based approach presented here is not only intriguing but also enhances the computed accuracy and efficiency. Numerical simulations verify the accuracy of this approach for both time and frequency domain responses.
出处 《Tsinghua Science and Technology》 EI CAS 2012年第1期84-93,共10页 清华大学学报(自然科学版(英文版)
基金 Supported by the National Key Basic Research and Development (973) Program of China (No. 2010CB327404)
关键词 coupled transmission lines equivalent circuit model order reduction APPROXIMATIONS coupled transmission lines equivalent circuit model order reduction approximations
  • 相关文献

参考文献20

  • 1Paul C R. A brief history of work in transmission lines for EMC applications. IEEE Trans. Electromagn. Compat., 2007, 49(2): 237-252.
  • 2Achar R, Nakhla M S. Simulation of high-speed interconnects. Proc. IEEE, 2001, 89(5): 693-728.
  • 3Agarwal K, Sylvester D, Blaauw D. Modeling and analysis of crosstalk noise in coupled RLC interconnects. IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems, 2006, 25(5): 892-90l.
  • 4Pillage L T, Rohrer R. Asymptotic waveform evaluation for timing analysis. IEEE Trans. Computer-Aided Design Integr. Circuits Syst., 1990,9(4): 352-366.
  • 5Gopal N, Neikirk D P, Pillage L T. Evaluating RC-interconnect using moment-matching approximations. In: Proc. Tech. Dig. IEEE/ACM Int. Conf. Comput.-Aided Des. Santa Clara, California, USA, 1991: 74-77.
  • 6Antonini G. A Dyadic Green's function based method for the transient analysis of lossy and dispersive multiconductor transmission lines. IEEE Transactions on Microwave Theory and Techniques, 2008, 56(4): 880-895.
  • 7Antonini G. A new methodology for the transient analysis of lossyand dispersive multiconductor transmission lines. IEEE Trans. Microw. Theory Tech., 2004, 52(9): 2227-2239.
  • 8Odabasioglu A, Celik M, Pileggi L. PRIMA: Passive reduced order interconnect macromodeling algorithm. IEEE Trans. Comput=Aided Design Integr. Circuits Syst., 1998, 18(8): 645-654.
  • 9Kerns K J, Yang A T. Preservation of passivity during RLC network reduction via split congruence transformation. In: Proc. 34th IEEE/ACM Des. Autom. Conf. Anaheim, CA, USA, 1997: 34-39.
  • 10Lin Saihua, Yang Huazhong, Luo Rong. A novel yd/nRLCG transmission line model considering complex RC(L) loads. IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems, 2007, 26(5): 970-977.

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部