Efficient numerical computation of the spectral transverse dyadic Green's function in stratified anisotropic media

被引:17
|
作者
Boix, RR
Alexopoulos, NG
Horno, M
机构
[1] Grupo de Microondas, Dpto. Electrónica y Electronmagnetismo, Facultad De Fisica, Avd. Reina Mercedes s/n, Sevilla
[2] Department of Electrical Engineering University of California, Los Angeles
关键词
MICROSTRIP ANTENNAS; ELECTROMAGNETIC-WAVES; DIPOLE ANTENNAS; DOMAIN METHOD; SUBSTRATE; SCATTERING; RADIATION; DESIGN; PATCH;
D O I
10.1163/156939396X01189
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Several new ideas are provided for computing the spectral transverse dyadic Green's function (STDGF) of a stratified anisotropic medium in an accurate and efficient way. A modified version of the equivalent boundary method is developed which makes it possible to compute the asymptotic values of the aforementioned. STDGF without employing exponential terms. This new technique for the computation of the STDGF of a stratified anisotropic medium has more numerical stability than the other techniques proposed so far, in which the use of exponential terms for the computation of the STDGF in all the range of variation of the spectral variables unavoidably leads to numerical problems for high values of the spectral variables. Also in this paper, it is shown how a two-step interpolation approach can be used for obtaining simple closed-form expressions of the STDGF of a stratified anisotropic medium in wide ranges of the spectral variables. It is expected that the use of this interpolation approach will introduce important CPU time savings in the spectral domain analysis of planar microwave circuits and printed antennas, where the STDGF of the substrate has to be calculated a large number of times.
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页码:1047 / 1083
页数:37
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