Title :
Microwave Circuit Design by Means of Direct Decomposition in the Finite-Element Method
Author :
De la Rubia, Valentín ; Zapata, Juan
Author_Institution :
Univ. Polytech. de Madrid, Madrid
fDate :
7/1/2007 12:00:00 AM
Abstract :
In this paper, a domain decomposition approach for design purposes is proposed. The analysis domain is divided into subdomains according to the arbitrarily shaped parts that should be modified in the synthesis process. A full-wave matrix-valued transfer function describes each decomposition subdomain, namely, an admittance-type matrix. Field continuity between subdomains is directly enforced by an admittance matrix connection. This methodology makes it possible to analyze only those parts of the analysis domain that are supposed to evolve in order to satisfy the design specifications. Furthermore, several modifications in the shape of the components are allowed as a consequence of the easy matrix connection process, where the consideration of different admittance-type matrices or absence of them gives rise to distinct geometric structures. A model order reduction technique is also considered for fast frequency sweeping. Finally, several numerical examples illustrate the capabilities of the proposed procedure, as well as its accuracy.
Keywords :
electric admittance; finite element analysis; microwave circuits; network synthesis; transfer function matrices; admittance-type matrix; direct decomposition; fast frequency sweeping; finite-element method; full-wave matrix-valued transfer function; geometric structures; matrix connection process; microwave circuit design; model order reduction technique; Admittance; Boundary conditions; Circuit synthesis; Design automation; Distributed decision making; Finite element methods; Matrix decomposition; Microwave theory and techniques; Shape; Transfer functions; Admittance matrix; design automation; design methodology; domain decomposition methods (DDMs); finite- element methods (FEMs); piecewise (PCW) linear approximation; reduced-order systems;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2007.900307