DocumentCode :
985043
Title :
An accurate and efficient analysis for transient plane waves obliquely incident on a conductive half space (TE case)
Author :
Pao, Hsueh-Yuan ; Dvorak, Steven L. ; Dudley, Donald G.
Author_Institution :
Hughes Missile Syst. Co., Tucson, AZ, USA
Volume :
44
Issue :
7
fYear :
1996
fDate :
7/1/1996 12:00:00 AM
Firstpage :
918
Lastpage :
924
Abstract :
A method which allows for the analytical evaluation of the inverse Laplace transform representations for a transient TE plane wave, obliquely incident on a conductive half-space, is discussed. We assume that the permittivity and conductivity of the dispersive half-space are independent of frequency. Starting with the equations for the transmitted wave in the Laplace domain, the corresponding time-domain expressions are first represented as inverse Laplace transforms. The transient fields are shown to consist of two canonical integrals f(β) and c(β). The canonical integrals, in turn, are solved analytically, thereby yielding solutions involving incomplete Lipschitz-Hankel integrals (ILHTs). The ILHIs are computed numerically using efficient convergent and asymptotic series expansions, thus enabling the efficient computation of the transient fields. The solutions are verified by comparing with previously published results and with results obtained using standard numerical integration and fast Fourier transform (FFT) algorithms
Keywords :
Bessel functions; Laplace transforms; convergence of numerical methods; electrical conductivity; electromagnetic fields; electromagnetic wave reflection; electromagnetic wave refraction; electromagnetic wave transmission; integral equations; inverse problems; permittivity; time-domain analysis; transient analysis; Bessel series; EM wave reflection; EM wave refraction; FFT algorithms; Laplace domain; asymptotic series expansions; canonical integrals; conductive half space; conductivity; convergent series expansions; fast Fourier transform; incomplete Lipschitz-Hankel integrals; inverse Laplace transform representations; numerical integration; obliquely incident plane waves; permittivity; time-domain expressions; transient TE plane wave; transient fields; transmitted wave; Conductivity; Dispersion; Frequency; Integral equations; Laplace equations; Permittivity; Standards publication; Tellurium; Time domain analysis; Transient analysis;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/8.504297
Filename :
504297
Link To Document :
بازگشت