DocumentCode
1211083
Title
Problem-matched basis functions for microstrip coupled slot arrays based on transmission line Green´s functions (TLGF)
Author
Bruni, S. ; Llombart, N. ; Neto, A. ; Gerini, G. ; Maci, S.
Author_Institution
TNO Defence, Safety & Security, Den Haag, Netherlands
Volume
53
Issue
11
fYear
2005
Firstpage
3556
Lastpage
3567
Abstract
Problem matched basis functions are proposed for the method of moments analysis of printed slot coupled microstrips. The appropriate equivalent currents of the integral equation kernel are represented in terms of two sets of entire domain basis functions. These functions synthesize on one hand the resonant behavior of slots, microstrips or dipoles and on the other hand the field in proximity of the feeding source and of the discontinuities. In order to define these basis functions, canonical geometries are identified, whose Green´s functions have been found in semi-analytical form. The accuracy and the effectiveness of the method in terms of convergence rate and number of unknowns is demonstrated by comparison with a standard fine meshing full-wave analysis. The method is extremely convenient for large arrays, where the subwavelength details should be treated together with large global dimensions. Since the proposed solution is independent of the dimensions of these details, it provides dramatic reduction of the number of unknowns and improvement of condition number.
Keywords
Green´s function methods; antenna feeds; convergence of numerical methods; dipole antenna arrays; electromagnetic coupling; integral equations; method of moments; microstrip antenna arrays; microstrip discontinuities; slot antenna arrays; MoM; TLGF; canonical geometry; convergence rate; dipole antenna; domain basis function; equivalent current; feeding source; integral equation kernel; method of moment analysis; printed microstrip coupled slot array; problem-matched basis function; resonant behavior; semianalytical form; transmission line Green´s function; Couplings; Geometry; Green´s function methods; Information security; Integral equations; Microstrip antenna arrays; Moment methods; Safety; Transmission line matrix methods; Transmission lines; Entire domain basis functions; Green´s functions; method of moments (MoM);
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/TAP.2005.858581
Filename
1528724
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