DocumentCode :
1229837
Title :
A fast volume-surface integral equation solver for scattering from composite conducting-dielectric objects
Author :
Nie, Xiao-Chun ; Yuan, Ning ; Li, Le-Wei ; Gan, Yeow-Beng ; Yeo, Tat Soon
Author_Institution :
Temasek Labs., Nat. Univ. of Singapore, Singapore
Volume :
53
Issue :
2
fYear :
2005
Firstpage :
818
Lastpage :
824
Abstract :
This paper presents a fast hybrid volume-surface integral equation approach for the computation of electromagnetic scattering from objects comprising both conductors and dielectric materials. The volume electric field integral equation is applied to the material region and the surface electric field integral equation is applied on the conducting surface. The method of moments (MoM) is used to convert the integral equation into a matrix equation and the precorrected-FFT (P-FFT) method is employed to reduce the memory requirement and CPU time for the matrix solution. The present approach is sufficiently versatile in handling problems with either open or closed conductors, and dielectric materials of arbitrary inhomogeneity, due to the combination of the surface and volume electric field integral equations. The application of the precorrected-FFT method facilitates the solving of much larger problems than can be handled by the conventional MoM.
Keywords :
computational electromagnetics; conducting materials; dielectric materials; electric field integral equations; electromagnetic wave scattering; fast Fourier transforms; matrix algebra; method of moments; MoM; P-FFT method; conductors materials; dielectric materials; electric field integral equation; electromagnetic computation; electromagnetic scattering; fast Fourier transforms; hybrid volume-surface integral equation; matrix equation; method of moments; precorrected-FFT; Conducting materials; Dielectric materials; Electromagnetic scattering; Gallium nitride; Integral equations; MLFMA; Matrix converters; Moment methods; Nonuniform electric fields; Transmission line matrix methods; Electromagnetic scattering; method of moments; precorrected-FFT method; volume-surface integral equation;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2004.841323
Filename :
1391154
Link To Document :
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