Title :
A Planar Reconfigurable Aperture With Lens and Reflectarray Modes of Operation
Author :
Lau, Jonathan Yun ; Hum, Sean Victor
Author_Institution :
Edward S. Rogers Sr. Dept. of Electr. & Comput. Eng., Univ. of Toronto, Toronto, ON, Canada
Abstract :
This paper presents the design and experimental characterization of a planar 6 × 6 fully reconfigurable array operating at 5.7 GHz, capable of functioning both as a reconfigurable array lens and a reconfigurable reflectarray. First, the design of the array element, which consists of two varactor diode-loaded patches coupled by a varactor diode-loaded slot, is reviewed. Next, the design and fabrication of a planar array is described, and the varactor biasing scheme is discussed in detail. Experimental results demonstrating 2-D beamforming are presented, where a broadside directivity of 20.8 dBi and a beam-scanning range of 50° by 50° is achieved for the lens mode. The ability of the array to also function as a reflectarray is also demonstrated, achieving a directivity of 19.4 dBi at broadside and a beam-scanning range of 60° by 30°. Not only is this array able to demonstrate full 2-D beamforming, it is also low-cost and easy to fabricate, making it very attractive for applications where high-gain beam-scanning is needed.
Keywords :
array signal processing; lens antennas; microstrip antenna arrays; planar antenna arrays; reflector antennas; slot antenna arrays; varactors; 2D beamforming; frequency 5.7 GHz; high gain beam scanning; planar fully reconfigurable array lens; planar reconfigurable aperture; reconfigurable reflectarray modes; varactor biasing scheme; varactor diode loaded patches; varactor diode loaded slot; Array signal processing; Arrays; Fabrication; Feeds; Gain; Lenses; Varactors; Antenna arrays; lens antennas; microstrip arrays; reconfigurable antennas; reflectarrays; reflector antennas; varactors;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2010.2086373