DocumentCode
1359842
Title
Demonstration of a Cognitive Radio Front End Using an Optically Pumped Reconfigurable Antenna System (OPRAS)
Author
Tawk, Youssef ; Costantine, Joseph ; Hemmady, Sameer ; Balakrishnan, Ganesh ; Avery, Keith ; Christodoulou, Christos G.
Author_Institution
Electr. & Comput. Eng. Dept., Univ. of New Mexico, Albuquerque, NM, USA
Volume
60
Issue
2
fYear
2012
Firstpage
1075
Lastpage
1083
Abstract
A cognitive radio front end using an optically pumped reconfigurable antenna system (OPRAS) is investigated. The scheme consists of a ultrawideband antenna and a reconfigurable narrowband antenna in close proximity to one another. The narrowband reconfigurability is achieved by a integrating laser diodes within the antenna structure to control the switching state of photoconductive silicon switches. This scheme has the advantage of eliminating the use of optical fiber cables to guide light to the switches, and enables easier integration of the reconfigurable antenna in a complete communication system. The performance of the proposed technique is presented, and comparisons are made to other commonly used switching techniques for reconfigurable antennas, such as techniques based on PIN diodes and RF microlectromechanical systems integration. The application of this antenna design scheme serving as the receive channel in a cognitive radio communication link is also demonstrated.
Keywords
cognitive radio; micromechanical devices; p-i-n diodes; radio links; semiconductor lasers; ultra wideband antennas; PIN diodes; RF microlectromechanical systems integration; antenna design scheme; cognitive radio communication link; cognitive radio front end; laser diodes; narrowband reconfigurability; optical fiber cables; optically pumped reconfigurable antenna system; photoconductive silicon switch; reconfigurable narrowband antenna; switching state control; ultrawideband antenna; Antenna measurements; Frequency measurement; Optical switches; Semiconductor lasers; Sensors; Ultra wideband antennas; Cognitive radio; laser diodes; photoconductivity; reconfigurable antenna; silicon; ultrawideband (UWB);
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/TAP.2011.2173139
Filename
6059493
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