DocumentCode
2398560
Title
Techniques for analysing finite frequency selective surfaces
Author
Koleck, T. ; Diez, H. ; Bolomey, J.C.
Author_Institution
CNES, France
Volume
1
fYear
1997
fDate
14-17 Apr 1997
Firstpage
161
Abstract
The problem of scattering from infinite frequency selective surfaces (FSS) have been studied for many years by using the Floquet theorem that reduces the computation domain to a single cell (metallic patch element). These methods are already well known. A few studies have been carried out on finite surfaces, but to our knowledge, none of them have considered a general case of application. We describe two methods to compute finite FSS. For small FSS, we have used a rigorous element-by-element approach: the spectral-Galerkin method. The exact interactions between elements are taken into account. For larger surfaces, this method is no more adaptable. The computation time and the memory requirement become too large. So, we used another approach based on plane wave spectral decomposition. It allows us to consider the finite problem as a periodic infinite one
Keywords
frequency selective surfaces; Floquet theorem; computation time; finite FSS; finite frequency selective surfaces; memory requirement; metallic patch element; periodic infinite problem; plane wave spectral decomposition; scattering; spectral-Galerkin method;
fLanguage
English
Publisher
iet
Conference_Titel
Antennas and Propagation, Tenth International Conference on (Conf. Publ. No. 436)
Conference_Location
Edinburgh
ISSN
0537-9989
Print_ISBN
0-85296-686-5
Type
conf
DOI
10.1049/cp:19970229
Filename
608540
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