Title :
Offset Parabolic Reflector Antenna Fed by EBG Dual-Band Focal Feed for Space Application
Author :
Kanso, Ahmad ; Chantalat, R. ; Thevenot, M. ; Arnaud, E. ; Monediere, T.
Author_Institution :
OSA team of the XLIM Lab., CNRS, Limoges, France
fDate :
7/2/1905 12:00:00 AM
Abstract :
A new design of a metallic dual-band electromagnetic band-gap (EBG) suitable to feed a reflector antenna for space multibeam applications is introduced in this letter. The EBG antenna is composed of double-layer frequency selective surfaces (FSS) arranged in the longitudinal direction and a square horn as a feed. First, we devise a technique to adapt the dual-band EBG antenna characteristics for this space application, which requires the same EBG phase center and the same radiation patterns for both frequency bands. Then, a dual-band EBG antenna has been designed. Finally, a prototype is realized, and the experimental measurements are compared with success to the simulated ones. The same phase center has been obtained at 5 and 7.5 GHz. This antenna is suitable to feed a reflector antenna with a focal-length-to-diameter (F/D) ratio of 1.2. The performances of the offset reflector fed by this antenna are good with a maximum efficiency about 77% and with sidelobes levels always better than -22 dB for both frequency bands.
Keywords :
antenna radiation patterns; frequency selective surfaces; microwave antennas; multifrequency antennas; offset reflector antennas; photonic band gap; reflector antenna feeds; space communication links; EBG dual-band focal feed; double-layer frequency selective surface; metallic dual-band electromagnetic band-gap; offset parabolic reflector antenna; radiation pattern; reflector antenna; space multibeam application; Antenna feeds; Antenna radiation patterns; Dual band; Metamaterials; Periodic structures; Reflector antennas; Dual-band; electronic band-gap (EBG) antenna; frequency selective surface (FSS); reflector antenna;
Journal_Title :
Antennas and Wireless Propagation Letters, IEEE
DOI :
10.1109/LAWP.2010.2070055