DocumentCode
1030779
Title
Radar cross section of a finite planar structure coated with a lossy dielectric
Author
Bhattacharyya, A. ; Tandon, S.K.
Author_Institution
Indian Institute of Technology, Kharagpur, India
Volume
32
Issue
9
fYear
1984
fDate
9/1/1984 12:00:00 AM
Firstpage
1003
Lastpage
1007
Abstract
An asymptotic high frequency estimation of monostatic radar cross section (RCS) of a finite planar metallic structure coated with a lossy dielectric is made theoretically and compared with experiments in the
- band. An expression for RCS is obtained by using a diffraction coefficient involving Maliuzhinets\´ function. A closed form expression of the Maliuzhinets\´ function has been developed. Corner diffraction effects are not considered. A continuous wave (CW) monostatic RCS measurement set up has been used to verify the theoretical results experimentally. A typical reduction with a single coating of epoxy resin of thickness equal to
is of the order of 5 dB for normal incidence compared to a conducting plate of the same size.
- band. An expression for RCS is obtained by using a diffraction coefficient involving Maliuzhinets\´ function. A closed form expression of the Maliuzhinets\´ function has been developed. Corner diffraction effects are not considered. A continuous wave (CW) monostatic RCS measurement set up has been used to verify the theoretical results experimentally. A typical reduction with a single coating of epoxy resin of thickness equal to
is of the order of 5 dB for normal incidence compared to a conducting plate of the same size.Keywords
Electromagnetic scattering by absorbing media; Radar countermeasures; Radar scattering cross sections; Antenna radiation patterns; Antennas and propagation; Coatings; Dielectric losses; Electromagnetic diffraction; Electromagnetic scattering; Phased arrays; Radar cross section; Strips; Transmission line theory;
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/TAP.1984.1143452
Filename
1143452
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