DocumentCode
1460853
Title
Low-Profile Array With Reduced Radar Cross Section by Using Hybrid Frequency Selective Surfaces
Author
Genovesi, Simone ; Costa, Filippo ; Monorchio, Agostino
Author_Institution
Dipt. di Ing. dell´´Inf., Univ. of Pisa, Pisa, Italy
Volume
60
Issue
5
fYear
2012
fDate
5/1/2012 12:00:00 AM
Firstpage
2327
Lastpage
2335
Abstract
A solution for reducing the radar cross section (RCS) of a microstrip antenna based on the use of frequency selective surfaces (FSSs) is described. The goal is accomplished by replacing the solid ground plane of the device with a hybrid structure comprising a suitable FSS. The behavior of the hybrid ground plane illuminated by a plane wave is analyzed by using a periodic method of moments (PMM), and it is modeled by resorting to a transmission-line equivalent circuit. Similarly, the propagation of the quasi-TEM mode along the modified feeding line of the array is represented by an equivalent circuit for surface waves. The two simplified analyses provide useful design criteria for the hybrid ground structure. The presented solution guarantees a decrease of the out-of-band radar signature of the target while preserving the desired in-band radiation characteristics of the low-profile array. A careful comparison to alternative configurations employing different ground planes has revealed the superior performance of the proposed design. Measurements on a realized prototype show a good agreement with simulations and prove the reliability of the design approach.
Keywords
frequency selective surfaces; method of moments; microstrip antenna arrays; radar cross-sections; hybrid frequency selective surfaces; hybrid ground plane behavior; hybrid structure; low-profile array; microstrip antenna; out-of-band radar signature; periodic method of moments; quasi-TEM mode; reduced radar cross section; transmission-line equivalent circuit; Arrays; Equivalent circuits; Frequency selective surfaces; Integrated circuit modeling; Microstrip; Microstrip antennas; Power transmission lines; Frequency selective surfaces (FSSs); radar cross section reduction (RCSR);
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/TAP.2012.2189701
Filename
6162951
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