DocumentCode :
2944512
Title :
Application of AIM and MBPE techniques to accelerate modeling of 3-D periodic structures with non-orthogonal lattices composed of inhomogeneous bianisotropic media
Author :
Wang, Xiande ; Werner, Douglas H.
Author_Institution :
Dept. of Electr. Eng., Pennsylvania State Univ., University Park, PA, USA
fYear :
2011
fDate :
3-8 July 2011
Firstpage :
2637
Lastpage :
2640
Abstract :
We present an efficient method for modeling 3-D doubly periodic structures over a wide frequency range based on hybrid finite element/boundary integral (FEBI) methods. The 3-D periodic structures can be represented as non-orthogonal lattices composed of inhomogeneous bianisotropic media with arbitrary metallic patches. Triangular prismatic volume elements were utilized to mesh the unit cell, which provided a great deal of flexibility in modeling complex planar geometries of arbitrary shape. The adaptive integral method (AIM) was applied to speed up the calculation of the matrix-vector product for the BI part within the iterative solver. Furthermore, a model-based parameter estimation (MBPE) technique was proposed for the wide-band interpolation of sparse impedance matrix elements in the BI portion for near field components that were used in the AIM. The accuracy and efficiency of the proposed algorithm is demonstrated by the presented numerical results. To demonstrate the flexibility of the proposed method in modeling arbitrarily shaped elements of frequency selective surfaces (FSS), we included simulation results for an FSS with a non-orthogonal lattice and two elliptical shaped patches embedded in bianisotropic media.
Keywords :
anisotropic media; boundary integral equations; electromagnetic wave propagation; finite element analysis; frequency selective surfaces; impedance matrix; inhomogeneous media; interpolation; iterative methods; parameter estimation; periodic structures; sparse matrices; 3D periodic structures; AIM; MBPE; adaptive integral method; arbitrary metallic patches; boundary integral methods; complex planar geometry; finite element methods; frequency selective surfaces; inhomogeneous bianisotropic media; iterative solver; matrix vector product; model based parameter estimation; non orthogonal lattices; sparse impedance matrix; triangular prismatic volume elements; wide-band interpolation; Bismuth; Finite element methods; Frequency selective surfaces; Lattices; Media; Periodic structures; Transmission line matrix methods; adaptive integral method; bianisotropic media; doubly periodic structure; frequency selective surface; model-based parameter estimation; non-orthogonal lattice;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Antennas and Propagation (APSURSI), 2011 IEEE International Symposium on
Conference_Location :
Spokane, WA
ISSN :
1522-3965
Print_ISBN :
978-1-4244-9562-7
Type :
conf
DOI :
10.1109/APS.2011.5997066
Filename :
5997066
Link To Document :
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