DocumentCode
1026982
Title
Cylindrical and three-dimensional corner reflector antennas
Author
Elkamchouchi, Hassan M.
Author_Institution
University of Alexandria, Alexandria, Egypt
Volume
31
Issue
3
fYear
1983
fDate
5/1/1983 12:00:00 AM
Firstpage
451
Lastpage
455
Abstract
Two reflector antennas are proposed. The first is constructed by adding a cylindrical reflecting surface of suitable radius to the
-shaped corner reflector antenna. The feeding element is a half-wavelength dipole. The resulting cylindrical corner reflector provided a 2 dB increase in gain, minimum sidelobe level, low input reactance, and uncritical dependence of performance on frequency. The second antenna is constructed by adding a cylindrical surface to the three-dimensional corner reflector. This extension provided an increase in gain of at least 6.5 dB, an input resistance compatible with the commercially available 50- or
coaxial cables, low input reactance, and uncritical dependence of performance on frequency. A grid-type cylindrical corner reflector antenna, and a three-dimensional corner reflector antenna with a cylindrical subsurface of finite reflecting surfaces were designed, and the measured input impedances, gains, and field patterns showed excellent agreement with the theoretical results for both antennas.
-shaped corner reflector antenna. The feeding element is a half-wavelength dipole. The resulting cylindrical corner reflector provided a 2 dB increase in gain, minimum sidelobe level, low input reactance, and uncritical dependence of performance on frequency. The second antenna is constructed by adding a cylindrical surface to the three-dimensional corner reflector. This extension provided an increase in gain of at least 6.5 dB, an input resistance compatible with the commercially available 50- or
coaxial cables, low input reactance, and uncritical dependence of performance on frequency. A grid-type cylindrical corner reflector antenna, and a three-dimensional corner reflector antenna with a cylindrical subsurface of finite reflecting surfaces were designed, and the measured input impedances, gains, and field patterns showed excellent agreement with the theoretical results for both antennas.Keywords
Corner reflector antennas; Cylindrical reflector antennas; Reflector antennas, corner; Reflector antennas, cylindrical; Antenna measurements; Antenna theory; Coaxial cables; Dipole antennas; Electrical resistance measurement; Frequency; Impedance measurement; Performance gain; Reflector antennas; Surface resistance;
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/TAP.1983.1143063
Filename
1143063
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