DocumentCode :
1156116
Title :
A symmetric FEM-IE formulation with a single-level IE-QR algorithm for solving electromagnetic radiation and scattering problems
Author :
Vouvakis, Marinos N. ; Lee, Seung-Cheol ; Zhao, Kezhong ; Lee, Jin-Fa
Author_Institution :
Electr. Eng. Dept., Ohio State Univ., Columbus, OH, USA
Volume :
52
Issue :
11
fYear :
2004
Firstpage :
3060
Lastpage :
3070
Abstract :
This paper presents, for the first time in the engineering community, a symmetric coupling between the finite element and integral equation methods (FEM-IE) for solving three-dimensional unbounded radiation and scattering problems. The proposed FEM-IE is based on the E-field vector Helmholtz equation. Curl-conforming vector finite elements are used to discretize the interior region, whereas the divergence-conforming surface elements are utilized in the IE truncation surface. The symmetry in the IE part is restored through the application of the Calderon-projector. Moreover, the IE computations are accelerated using a single level QR algorithm. This reduces both memory and computational time. Furthermore it allows the use of different Green´s functions for the exterior problem, with only minor modifications on the algorithm. The resulted system of equations is solved with a very efficient preconditioned conjugate gradient (PCCG) with a p-Multiplicative Schwarz preconditioner.
Keywords :
Helmholtz equations; conjugate gradient methods; electromagnetic wave scattering; finite element analysis; integral equations; matrix algebra; Colder on-projector; E-field vector Helmholtz equation; FEM-IE; PCCG; curl-conforming vector finite element; electromagnetic radiation; electromagnetic scattering problem; finite element method; integral equation method; p-multiplicative Schwarz preconditioner; preconditioned conjugate gradient; single-level IE-QR algorithm; symmetric FEM-IE formulation; symmetric coupling; Assembly; Electromagnetic coupling; Electromagnetic radiation; Electromagnetic scattering; Finite element methods; Integral equations; Iterative methods; Maxwell equations; Radar scattering; Symmetric matrices; 65; Fast integral equation method; hybrid finite element method and integral equation method; multiplicative Schwarz preconditioner; radiation and scattering;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2004.837525
Filename :
1353504
Link To Document :
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