DocumentCode
48278
Title
Unit Cell for Reflectarrays Operating With Independent Dual Circular Polarizations
Author
Mener, Simon ; Gillard, Raphael ; Sauleau, Ronan ; Cheymol, Cecile ; Potier, Patrick
Author_Institution
Inst. of Electron. & Telecommun. of Rennes, INSA, Rennes, France
Volume
13
fYear
2014
fDate
2014
Firstpage
1176
Lastpage
1179
Abstract
A unit cell for dual-circularly-polarized (CP) reflectarrays illuminated by a dual-CP primary feed is designed and validated experimentally around 8.5 GHz. It is composed of two layers reflecting independently and simultaneously the two incident circular polarizations. The first layer is a circular polarization selective surface (CPSS) based on an enhanced version of the original Pierrot´s cell with multiple wires bent in a crank-like shape. The second layer is made of dipoles printed on a grounded substrate; it is used to reflect the incident right-hand CP (RHCP) wave transmitted through the CPSS with a 2-bit phase resolution. This letter demonstrates that the sole association of both layers is not sufficient to reach the expected behavior. An additional optimization step is required to cancel out uncontrolled reflections and improve isolation between both polarizations. The simulated and measured characteristics are in good agreement for the two circular polarizations .
Keywords
frequency selective surfaces; microwave antenna arrays; polarisation; reflectarray antennas; reflector antenna feeds; 2-bit phase resolution; CPSS; Pierrot´s cell; RHCP; circular polarization selective surface; dipoles; dual-CP primary feed; dual-circularly-polarized reflectarrays; grounded substrate; incident circular polarizations; incident right-hand CP; optimization step; uncontrolled reflections; unit cell; Bandwidth; Broadband antennas; Broadband communication; Europe; Reflection coefficient; Reflector antennas; Circular polarization selective surface; dual circular polarization; reflectarray; unit cell;
fLanguage
English
Journal_Title
Antennas and Wireless Propagation Letters, IEEE
Publisher
ieee
ISSN
1536-1225
Type
jour
DOI
10.1109/LAWP.2014.2330623
Filename
6832476
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