DocumentCode
854006
Title
Passive parameterized time-domain macromodels for high-speed transmission-line networks
Author
Gunupudi, Pavan K. ; Khazaka, Roni ; Nakhla, Michel S. ; Smy, Tom ; Celo, Dritan
Author_Institution
Dept. of Electron., Carleton Univ., Ottawa, Ont., Canada
Volume
51
Issue
12
fYear
2003
Firstpage
2347
Lastpage
2354
Abstract
There is a significant need for efficient and accurate macromodels of components during the design of microwave circuits. Increased integration levels in microwave devices and higher signal speeds have produced the need to include effects previously neglected during circuit simulations. Accurate prediction of these effects involve solution of large systems of equations, the direct simulation of which is prohibitively CPU expensive. In this paper, an algorithm is proposed to form passive parametrized macromodels of large linear networks that match the characteristics of the original network in time, as well as other design parameters of the circuit. A novel feature of the algorithm is the ability to incorporate a set of design parameters within the reduced model. The size of the reduced models obtained using the proposed algorithm were less than 5% when compared to the original circuit. A speedup of an order of magnitude was observed for typical high-speed transmission-line networks. The algorithm is general and can be applied to other disciplines such as thermal analysis.
Keywords
circuit simulation; linear network analysis; microwave circuits; reduced order systems; time-domain analysis; algorithm; circuit simulations; design parameters; direct simulation; high-speed transmission-line networks; large linear networks; microwave circuits; microwave devices; passive parameterized time-domain macromodels; thermal analysis; Algorithm design and analysis; Central Processing Unit; Circuit simulation; Equations; Microwave circuits; Microwave devices; Predictive models; Reduced order systems; Time domain analysis; Transmission lines;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.2003.820169
Filename
1256766
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