DocumentCode :
737409
Title :
Investigation of Scattering Properties of Large-Scale Aperiodic Tilings Using a Combination of the Characteristic Basis Function and Adaptive Integral Methods
Author :
Xiande Wang ; Werner, Douglas H. ; Turpin, Jeremiah P.
Author_Institution :
Dept. of Electr. Eng., Pennsylvania State Univ., University Park, PA, USA
Volume :
61
Issue :
6
fYear :
2013
fDate :
6/1/2013 12:00:00 AM
Firstpage :
3149
Lastpage :
3160
Abstract :
This paper presents a hybrid approach for efficient analysis of electromagnetic (EM) scattering from large-scale aperiodic structures (e.g., aperiodic Penrose and Danzer tilings), which integrates the characteristic basis function method (CBFM) and the adaptive integral method (AIM). By performing a domain decomposition, a series of characteristic basis functions (CBFs) that are defined on a macro block and comprised of a relatively large number of sub-domain basis functions facilitate a substantial reduction in the method of moments (MoM) matrix size, enabling the use of a direct solver for large problems. The AIM is applied to accelerate the calculation of CBFM-reduced MoM matrices, significantly decreasing the CPU time and memory required for solving large-scale problems. As the size of one block becomes electrically large, the original CBFM combined with the AIM is employed to generate the initial CBFs by solving a large problem with multiple excitations, which results in efficiently constructing the final CBFs afforded by the singular value decomposition (SVD) procedure. This methodology produces a two-level “CBFM + AIM” hybrid algorithm for efficiently characterizing large-scale objects. The numerical results presented demonstrate the accuracy and efficiency of the proposed hybrid algorithm. Then, the developed solver is applied to investigate EM scattering properties of large-scale aperiodic tilings. The numerical results show that Penrose/Danzer tilings exhibit significantly improved grating lobe suppression as compared to their periodic counterparts.
Keywords :
electromagnetic wave scattering; integral equations; matrix algebra; method of moments; singular value decomposition; AIM; CBFM; MoM; Penrose-Danzer tilings; SVD; adaptive integral method; characteristic basis function method; domain decomposition; electromagnetic scattering; grating lobe suppression; large-scale aperiodic structures; large-scale aperiodic tilings; large-scale problems; matrix size; method of moments; multiple excitations; scattering properties; singular value decomposition; sub-domain basis functions; substantial reduction; Adaptive integral method (AIM); Penrose tiling and Danzer tiling; aperiodic structure; characteristic basis function method (CBFM); singular value decomposition (SVD);
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2013.2250474
Filename :
6490350
Link To Document :
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