DocumentCode :
742702
Title :
Self-Dual Integral Equations for Electromagnetic Scattering From IBC Objects
Author :
Su Yan ; Jian-Ming Jin
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Illinois at Urbana-Champaign, Urbana, IL, USA
Volume :
61
Issue :
11
fYear :
2013
Firstpage :
5533
Lastpage :
5546
Abstract :
In this paper, a novel surface integral equation formulation is proposed to solve electromagnetic scattering from objects with impedance surfaces. Derived from a new implementation of the impedance boundary condition (IBC), the proposed surface integral equations are able to calculate scattering not only from objects with impedance surfaces, but also from perfect electric conductors (PEC) and perfect magnetic conductors (PMC) if the surface impedance is set to zero and infinity, respectively. By including both the surface electric and magnetic currents as unknown quantities, the proposed formulations are dual formulations of themselves, and are free of spurious interior resonance corruption. The condition numbers of the resulting system matrices with respect to different surface impedance and mesh densities, and applications to uniform and nonuniform cases are discussed. The multilevel fast multipole algorithm is employed for calculation of electromagnetic scattering from very large objects. Numerical examples are given to demonstrate the performance of the proposed formulations.
Keywords :
conductors (electric); electromagnetic wave scattering; integral equations; surface impedance; IBC; PEC; PMC; electromagnetic scattering; impedance boundary condition; impedance surfaces; mesh densities; multilevel fast multipole algorithm; novel surface integral equation formulation; perfect electric conductors; perfect magnetic conductors; self-dual integral equation; spurious interior resonance corruption; surface electric currents; surface magnetic currents; system matrices; Equations; Impedance; Integral equations; Magnetic resonance; Scattering; Surface impedance; Tin; Electromagnetic scattering; impedance boundary condition (IBC); perfect electric conductor (PEC); perfect magnetic conductor (PMC); self-dual formulation; surface integral equation;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2013.2276929
Filename :
6575149
Link To Document :
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