Title :
Finite-element modeling for the design optimization of microwave filters
Author :
Bila, S. ; Baillargeat, D. ; Aubourg, M. ; Verdeyme, S. ; Seyfert, F. ; Baratchart, L. ; Boichon, C. ; Thevenon, F. ; Puech, J. ; Zanchi, C. ; Lapierre, L. ; Sombrin, J.
Author_Institution :
Inst. de Recherche en Commun. Opt.s et Microondes, Limoges, France
fDate :
3/1/2004 12:00:00 AM
Abstract :
This paper outlines an electromagnetic optimization technique dedicated to the design of microwave bandpass filters. The purpose is to determine the optimal dimensions of the electromagnetic model. Applying this technique, the geometrical dimensions of the distributed structure are accurately determined, and no experimental readjustment is necessary. The optimization procedure combines an electromagnetic analysis and a parameter extraction. The analysis method is a finite-element modeling coupled with a frequency parameterization technique for improving the computation time. The parameter extraction method is based on the approximation of the simulated scattering matrix and on the synthesis of the equivalent electrical network. The comparison between extracted and ideal networks enables to converge the optimal dimensions. The procedure is applied to design a dual-mode waveguide filter. In this case, within the electromagnetic model, the screws are taken into account using lumped elements which may be adjusted independently.
Keywords :
computational electromagnetics; electromagnetic fields; finite element analysis; microwave filters; optimisation; parameter estimation; waveguide filters; design optimization; dual-mode waveguide filter; electromagnetic analysis; electromagnetic model; electromagnetic optimization; equivalent electrical network; finite-element methods; finite-element modeling; frequency parameterization; geometrical dimensions; microwave bandpass filters; microwave filters; parameter estimation; parameter extraction; scattering matrix; Band pass filters; Coupled mode analysis; Design optimization; Electromagnetic analysis; Electromagnetic modeling; Finite element methods; Frequency; Microwave filters; Microwave theory and techniques; Parameter extraction;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2004.824586