DocumentCode :
802192
Title :
TE-wave penetration into finite-thickness slotted circular cylinder with lossy and lossless inner coatings
Author :
Serebryannikov, Andriy E. ; Nosich, Alexander I.
Author_Institution :
Tech. Univ. Hamburg-Harburg, Hamburg, Germany
Volume :
47
Issue :
4
fYear :
2005
Firstpage :
709
Lastpage :
716
Abstract :
A technique is developed to study the penetration of a TE-polarized plane wave into perfectly electric conducting cylindrical cavities with multiple apertures, taking into account wall thickness and multilayered inner filling. It is based on an integral representation of the tangential electric field on the slot apertures and the Galerkin method using weighted Gegenbauer polynomials as basis functions. Extensive parametric studies are performed to reveal the main features of the penetrated field in a wide frequency range for single- and double-layer coatings of three types. In particular, the effect of geometric and material parameters on the appearance and attenuation of the cavity resonances is studied. The strongest effect of cylinder thickness on the penetrated field is observed in the vicinity of the peaks of the frequency dependence and must be taken into account, even if the thickness is small.
Keywords :
Galerkin method; cavity resonators; conducting bodies; electric field integral equations; electromagnetic wave polarisation; polynomials; Galerkin method; TE-polarized plane wave; TE-wave penetration; cavity resonances; finite-thickness slotted circular cylinder; integral representation; perfectly electric conducting cylindrical cavities; tangential electric field; weighted Gegenbauer polynomials; Apertures; Coatings; Electromagnetic scattering; Electromagnetic shielding; Filling; Frequency; Moment methods; Parametric study; Polynomials; Radar scattering; Cavity-backed aperture; Galerkin method; coating; penetrated field; plane wave;
fLanguage :
English
Journal_Title :
Electromagnetic Compatibility, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9375
Type :
jour
DOI :
10.1109/TEMC.2005.859058
Filename :
1580740
Link To Document :
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