DocumentCode :
738305
Title :
Wideband 400-Element Electronically Reconfigurable Transmitarray in X Band
Author :
Clemente, Antonio ; Dussopt, Laurent ; Sauleau, Ronan ; Potier, Patrick ; Pouliguen, P.
Author_Institution :
CEA-LETI, Grenoble, France
Volume :
61
Issue :
10
fYear :
2013
Firstpage :
5017
Lastpage :
5027
Abstract :
A fully electronically reconfigurable 400-element transmitarray is studied numerically and experimentally in X-band. The array operates in linear polarization and consists of 20 × 20 unit-cells. A 1-bit phase resolution has been selected for the unit-cell in order to reduce the complexity of the biasing network and steering logic, the insertion loss and the overall cost of the antenna system. The unit-cell stack-up is simple and is made of four metal layers: active side, biasing lines, ground plane and passive side. Two p-i-n diodes are integrated on the active side of each cell in order to control its transmission phase. The active array contains 800 diodes in total. It demonstrates experimentally pencil beam scanning over a 140 × 80-degree window over a 15.8% fractional bandwidth, with a maximum gain of 22.7 dBi at broadside. We also show that the same antenna array can be used for beam shaping applications (flat-top beam). The experimental results presented between 8 and 12 GHz are in good agreement with the theoretical performance calculated using full-wave electromagnetic simulations and an in-house CAD tool based on analytical modeling.
Keywords :
antenna arrays; p-i-n diodes; polarisation; transmitting antennas; X band; active side; antenna system; beam shaping applications; biasing lines; biasing network; flat top beam; fractional bandwidth; frequency 8 GHz to 12 GHz; full-wave electromagnetic simulations; gain 22.7 dB; ground plane; linear polarization; p-i-n diodes; passive side; pencil beam scanning; steering logic; transmission phase; unit cell stackup; wideband 400 element electronically reconfigurable transmitarray; 2-D beam scanning; Active microstrip array; array lens; beam shaping; discrete lens; reconfigurable transmitarray antenna;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2013.2271493
Filename :
6547987
Link To Document :
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