DocumentCode :
1096096
Title :
Model-order reduction of finite-element approximations of passive electromagnetic devices including lumped electrical-circuit models
Author :
Wu, Hong ; Cangellaris, Andreas C.
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Illinois, Urbana, IL, USA
Volume :
52
Issue :
9
fYear :
2004
Firstpage :
2305
Lastpage :
2313
Abstract :
A methodology is presented for the development of reduced-order macromodels for multiport passive electromagnetic devices that include embedded lumped elements. The proposed methodology utilizes a discrete state-space model for the electromagnetic device, generated through the application of the finite-element method for the spatial discretization of Maxwell´s curl equations. The incorporation of lumped resistors, inductors, and capacitors is effected through the direct stamping of the state-space voltage-current relationship for these elements in the matrices of the generated state-space form of the discrete model. The conditions necessary for the discrete model to be passive are discussed. The subsequent reduction of the discrete state-space model is effected through the application of a Krylov-subspace-based model-order reduction scheme that guarantees the passivity of the generated multiport macromodel, provided that the original state-space model is passive. The proposed methodology is demonstrated and validated through its application for the generation of reduced-order macromodels for a coaxial cable circuit and a microstrip directional coupler circuit.
Keywords :
Maxwell equations; approximation theory; electromagnetic devices; finite element analysis; reduced order systems; state-space methods; Krylov subspace based model order reduction; Maxwells curl equations; capacitors; coaxial cable circuit; direct stamping; discrete model; discrete state space model; electromagnetic device; embedded lumped elements; finite element approximations; inductors; lumped electrical circuit models; lumped resistors; microstrip directional coupler circuit; model order reduction; multiport macromodel; passive electromagnetic device; reduced order macromodels; spatial discretization; state space voltage current relationship; subsequent reduction; Capacitors; Circuits; Electromagnetic devices; Electromagnetic modeling; Finite element methods; Inductors; Maxwell equations; Resistors; Transmission line matrix methods; Voltage; CAD; FEMS; Fast algorithms; finite-element methods; full-wave computer-aided design; model-order reduction;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2004.834582
Filename :
1331663
Link To Document :
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