DocumentCode :
849060
Title :
A Frequency Selective Surface With Miniaturized Elements
Author :
Sarabandi, Kamal ; Behdad, Nader
Author_Institution :
Dept. of Electr. Eng. & Comput. Sci., Michigan Univ., Ann Arbor, MI
Volume :
55
Issue :
5
fYear :
2007
fDate :
5/1/2007 12:00:00 AM
Firstpage :
1239
Lastpage :
1245
Abstract :
We demonstrate a new class of bandpass frequency selective surface (FSS), the building block of which, unlike the traditional FSSs, makes use of resonant dipole and slot structures that have dimensions much smaller than the operating wavelength. This design allows localization of bandpass characteristics to within a small area on the surface which in turn facilitates flexible spatial filtering for an arbitrary wave phasefront. The proposed FSS is made up of periodic array of metallic patches separated by thin air-gaps backed by a wire mesh having the same periodicity (Ltlambda). The array of metallic patches constitute a capacitive surface and the wire mesh a coupled inductive surface, which together act as a resonant structure in the path of an incident plane wave. Like traditional FSSs, the capacitive and inductive surfaces of the proposed FSS can easily be fabricated using printed circuit technology on both sides of microwave substrates. It is shown that by cascading such bandpass surfaces in a proper fashion, any arbitrary multipole filter or non-commensurate multiband response can be obtained. The frequency response of the proposed miniaturized-element frequency selective surface (MEFSS) is demonstrated for various incident angles and it is shown that one-pole designs are less sensitive than two-pole designs to the angle of incidence. Dual band designs are also possible based on two-pole designs, but are more sensitive to incident angle than single band designs because of their larger (in terms of wavelengths) spacing. Prototypes of single-pole and dual-pole MEFSSs are fabricated and tested in a waveguide environment at X-band frequencies and excellent agreements between the measured and simulated results are demonstrated
Keywords :
dipole antenna arrays; frequency response; frequency selective surfaces; microstrip antenna arrays; multifrequency antennas; printed circuits; slot antenna arrays; spatial filters; substrates; MEFSS; X-band frequency; arbitrary wave phasefront; bandpass FSS; dual band design; frequency response; frequency selective surface; metallic patch periodic array; microwave substrate; miniaturized element; printed circuit technology; resonant dipole; slot structure; spatial filtering; waveguide environment; Air gaps; Band pass filters; Coupling circuits; Filtering; Frequency selective surfaces; Microwave technology; Printed circuits; Resonance; Surface waves; Wire; Bandpass radome; frequency selective surfaces (FSSs); spatial filter;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2007.895567
Filename :
4200922
Link To Document :
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