DocumentCode :
1267988
Title :
Integral Equation Based Domain Decomposition Method for Solving Electromagnetic Wave Scattering From Non-Penetrable Objects
Author :
Peng, Zhen ; Wang, Xiao-Chuan ; Lee, Jin-Fa
Author_Institution :
ElectroSci. Lab., Ohio State Univ., Columbus, OH, USA
Volume :
59
Issue :
9
fYear :
2011
Firstpage :
3328
Lastpage :
3338
Abstract :
The integral equation (IE) method is commonly utilized to model time-harmonic electromagnetic (EM) problems. One of the greatest challenges in its applications arises in the solution of the resulting ill-conditioned matrix equation. We introduce a new domain decomposition method (DDM) for the IE solution of EM wave scattering from non-penetrable objects. The proposed method is a non-overlapping/non-conformal DDM and it provides a computationally efficient and effective preconditioner for the IE matrix equations. Moreover, the proposed approach is very suitable for dealing with multi-scale electromagnetic problems since each sub-domain has its own characteristics length and will be meshed independently. Furthermore, for each sub-domain, we are free to choose the most effective IE sub-domain solver based on its local geometrical features and electromagnetic characteristics. Additionally, the multilevel fast multi-pole algorithm (MLFMA) is utilized to accelerate the computations of couplings between sub-domains. Numerical results demonstrate that the proposed method yields rapid convergence in the outer Krylov iterative solution process. Finally, simulations of several large-scale examples testify to the effectiveness and robustness of the proposed IE based DDM.
Keywords :
electric field integral equations; electromagnetic wave scattering; iterative methods; magnetic field integral equations; matrix algebra; EM wave scattering; IE based DDM; IE matrix equation; IE subdomain solver; Krylov iterative solution process; domain decomposition method; electromagnetic characteristics; electromagnetic wave scattering; ill-conditioned matrix equation; integral equation; local geometrical feature; multilevel fast multipole algorithm; multiscale electromagnetic problem; nonconformal DDM; nonoverlapping DDM; nonpenetrable object; time-harmonic electromagnetic problem; Acceleration; Electromagnetic scattering; Equations; Integral equations; Magnetic fields; Mathematical model; Surface impedance; Domain decomposition; integral equation (IE) method; method of moments; multilevel fast multipole algorithm (MLFMA); scattering;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2011.2161542
Filename :
5948349
Link To Document :
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