DocumentCode
31366
Title
Bandwidth Improvement Methods of Transmitarray Antennas
Author
Abdelrahman, Ahmed H. ; Nayeri, Payam ; Elsherbeni, Atef Z. ; Fan Yang
Author_Institution
Electr. & Comput. Eng. Dept., Univ. of Arizona, Tucson, AZ, USA
Volume
63
Issue
7
fYear
2015
fDate
Jul-15
Firstpage
2946
Lastpage
2954
Abstract
Despite several advantages of planar transmitarray antennas compared to conventional lens antennas, they have a narrow bandwidth. The goal of this paper is to improve the bandwidth of transmitarray antennas through the control of the transmission phase range and the optimization of the phase distribution on the transmitarray aperture. To validate the proposed approaches, two quad-layer transmitarrays using double square loop elements have been designed, fabricated, and tested at Ku-band. The transmission phase distribution is optimized for both antennas, while they differ only in the transmission phase ranges. It is shown that the transmitarray antennas designed using the proposed techniques achieve 1-dB gain bandwidth of 9.8% and 11.7%, respectively. The measured gains at 13.5 GHz are 30.22 and 29.95 dB, respectively, leading to aperture efficiencies of 50% and 47%, respectively.
Keywords
antenna feeds; aperture antennas; bandwidth allocation; microstrip antenna arrays; optimisation; planar antenna arrays; transmitting antennas; Ku-band; bandwidth improvement methods; double square loop elements; feed source; frequency 13.5 GHz; gain 1 dB; gain 29.95 dB; gain 30.22 dB; phase distribution optimization; planar transmitarray antennas; printed antenna element array; quad-layer transmitarrays; transmission phase distribution; transmission phase range control; transmitarray aperture; Aperture antennas; Arrays; Bandwidth; Feeds; Gain; Transmitting antennas; Multilayer; Wideband; multilayer; transmission phase range; transmitarray antenna; wideband;
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/TAP.2015.2423706
Filename
7088574
Link To Document