DocumentCode :
380060
Title :
A fast volume-surface integral equation solver for radiation and scattering from wire antennas, IBC surfaces and inhomogeneous dielectric objects
Author :
Hsueh-Yung Chao ; Chew, Weng Cho ; Lu, Cal-Cheng
Author_Institution :
Dept. of Electr. & Comput. Eng., Illinois Univ., Urbana, IL, USA
Volume :
2
fYear :
2002
fDate :
2002
Firstpage :
610
Abstract :
Dielectric materials are often involved in electromagnetic simulation for real-world problems. Previously, researchers have applied the fast multipole method and a hybrid volume-surface integral equation (VSIE) formulation to solve scattering problems involving both PEC and inhomogeneous dielectric objects. Although the above solver can solve scattering from electrically large objects with optimal computational complexity, it only involves surface and volume basis functions to model currents on PEC surfaces and in dielectric media. In order to solve problems involving additional types of scatterers and radiators, such as wire antennas, thin dielectric sheets, and impedance surfaces, we have enhanced the multilevel fast multipole code in Chao et al. (1998) with the impedance boundary condition (IBC) and the hybrid VSIE formulation. The paper discusses how a variety of basis functions are incorporated into the hybrid VSIE formulation and the multilevel fast multipole algorithm (MLFMA).
Keywords :
antenna radiation patterns; dielectric bodies; electric impedance; electromagnetic wave scattering; integral equations; microstrip antennas; monopole antennas; wire antennas; IBC surfaces; MLFMA; electrically large objects; electromagnetic simulation; fast volume-surface integral equation solver; hybrid volume-surface integral equation formulation; impedance boundary condition; impedance surfaces; inhomogeneous dielectric objects; multilevel fast multipole algorithm; multilevel fast multipole code; radiation; scattering; thin dielectric sheets; wire antennas; Chaos; Computational complexity; Computational modeling; Dielectric materials; Electromagnetic radiation; Electromagnetic scattering; Integral equations; MLFMA; Surface impedance; Wire;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Antennas and Propagation Society International Symposium, 2002. IEEE
Print_ISBN :
0-7803-7330-8
Type :
conf
DOI :
10.1109/APS.2002.1016721
Filename :
1016721
Link To Document :
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