DocumentCode :
241656
Title :
Ultra thin resistively loaded FSS absorber for polarisation independent operation at large incident angles
Author :
Zabri, S.N. ; Cahill, Ronan ; Schuchinsky, A.
Author_Institution :
Inst. of Electron., Commun. & Inf. Technol., Queen´s Univ. Belfast, Belfast, UK
fYear :
2014
fDate :
6-11 April 2014
Firstpage :
1363
Lastpage :
1367
Abstract :
In this paper we report on a resistively loaded Frequency Selective Surface (FSS) absorber design which is insensitive to the polarization of microwave signals incident at angles of 45o ± 5o. The metal backed periodic structure is composed of an array of conductive rectangular loops, each loaded with a resistor at the center of the four sides. The geometry of the absorber and the resistance value of the vertical and horizontal resistor pairs are carefully chosen so that the structure presents a real impedance of 377 Ω at the center operating frequency for both TE and TM polarized waves incident at 45o. Numerical predictions of the electromagnetic scattering from three different absorbers, designed to work at X-band, are used to investigate the effect of thickness and resistance value on the reflectivity bandwidth and angular sensitivity.
Keywords :
electromagnetic wave absorption; electromagnetic wave polarisation; electromagnetic wave reflection; electromagnetic wave scattering; frequency selective surfaces; periodic structures; resistors; TE polarized wave; TM polarized wave; angular sensitivity; conductive rectangular loop array; electromagnetic scattering; frequency selective surface; geometry; horizontal resistor pair; large incident angle; metal backed periodic structure; microwave signal incident polarization; numerical prediction; polarisation independent operation; reflectivity bandwidth sensitivity; resistance 377 ohm; ultrathin resistively loaded FSS absorber design; vertical resistor pair; Bandwidth; Frequency selective surfaces; Impedance; Radar; Reflectivity; Resistance; Surface impedance; Frequency Selective Surface (FSS); high impedance surface (HIS); microwave absorbers; radar absorbing material;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Antennas and Propagation (EuCAP), 2014 8th European Conference on
Conference_Location :
The Hague
Type :
conf
DOI :
10.1109/EuCAP.2014.6902031
Filename :
6902031
Link To Document :
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