DocumentCode
2878282
Title
A non-conformal volume surface integral equation for electromagnetic scatterings from composite PEC and inhomogenous anisotropic scatterers
Author
Tiong-Huat Ng ; Jin-Fa Lee ; Zhen Peng ; Kheng Hwee Lim
Author_Institution
DSO Nat. Labs., Singapore, Singapore
fYear
2013
fDate
7-13 July 2013
Firstpage
728
Lastpage
729
Abstract
This paper presents a non-conformal volume surface integral equation (VSIE) for electromagnetic scatterings from composite structure consisting of perfect electric conductors (PEC) and inhomogeneous anisotropic materials with complex permittivity and permeability tensors. The VSIE can be decoupled into volume integral equation (VIE) and surface integral equation (SIE) for pentrable and non-pentrable scatterers respectively. The volume integral equation (VIE) is solved by applying the gradient-gradient operator on the Green´s function which consequentially allows the use of piecewise constant non-conformal tetrahedral meshes. The surface integral equation (SIE) is solved using integral equation discontinuous Galerkin´s (IEDG) formulation, which allows the PEC surface to be discretised using non-conformal meshes. The solution of VSIE consists of inner and outer loop solution process. During the inner solution loop, the scatterings from VIE domains and SIE domains are solved as independent domains. At the outer loop solution, their mutual interactions are computed. The iterative inner and outer loop solution is repeated until the solutions of the different domains have converged to the required accuracy.
Keywords
Galerkin method; Green´s function methods; anisotropic media; computational electromagnetics; conductors (electric); electromagnetic wave scattering; gradient methods; inhomogeneous media; integral equations; permeability; permittivity; Green function; IEDG formulation; VIE; VSIE; complex permittivity; composite PEC; electromagnetic scattering; gradient-gradient operator; inhomogenous anisotropic scatterer; inner loop solution process; integral equation discontinuous Galerkin formulation; nonconformal volume surface integral equation; nonpentrable scatterer; outer loop solution process; perfect electric conductors; permeability tensors; piecewise constant nonconformal tetrahedral meshes; volume integral equation; Dielectrics; Electromagnetic scattering; Integral equations; Magnetic domains; Method of moments; Tensile stress;
fLanguage
English
Publisher
ieee
Conference_Titel
Antennas and Propagation Society International Symposium (APSURSI), 2013 IEEE
Conference_Location
Orlando, FL
ISSN
1522-3965
Print_ISBN
978-1-4673-5315-1
Type
conf
DOI
10.1109/APS.2013.6711023
Filename
6711023
Link To Document