DocumentCode
1368972
Title
Design and Implementation of a Closed Cylindrical BFN-Fed Circular Array Antenna for Multiple-Beam Coverage in Azimuth
Author
Fonseca, Nelson Jorge G
Author_Institution
Antenna Dept., Centre Nat. d´´Etudes Spatiales (CNES), Toulouse, France
Volume
60
Issue
2
fYear
2012
Firstpage
863
Lastpage
869
Abstract
This paper describes a beamforming network well adapted to produce evenly distributed multiple-beam coverage over a full 360° angular range in azimuth. This structure is very simple, flexible, and compatible with low-cost manufacturing processes such as printed technology. The proposed design is based on balanced power dividers and combiners arranged in such a way to feed a sector of a circular array antenna with Gaussian amplitude distribution and in-phase signals. The first characteristic provides control on the radiation pattern shape, including main lobe shape and sidelobe level, while the second ensures stable beam pointing over a wide frequency range. The proposed azimuth beamforming network is described, and a specific design in microstrip technology is presented with a center frequency at 6 GHz. Simulation results are supported by the measurement of several prototypes. In particular, two designs including the circular array antenna are compared to investigate the impact of the circular array antenna radius on radiation patterns. Despite the assumptions, good correlation is found between simulation and measurement results, thus confirming the properties of the proposed beamforming network concept. Integration of phase controls in the feeding network and its impact on the overall antenna efficiency are also discussed.
Keywords
Gaussian distribution; antenna feeds; antenna radiation patterns; array signal processing; microstrip antenna arrays; microwave antenna arrays; phase control; power combiners; power dividers; Gaussian amplitude distribution; azimuth beamforming network; closed cylindrical BFN-fed circular array antenna; distributed multiple beam coverage; in-phase signals; main lobe shape; microstrip technology; phase control; power combiners; power dividers; radiation pattern shape; sidelobe level; Antenna arrays; Antenna measurements; Antenna radiation patterns; Arrays; Azimuth; Insertion loss; Prototypes; Azimuth distribution; circular and cylindrical array antenna; in-phase Gaussian-like amplitude distribution; multiple beamforming network;
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/TAP.2011.2174956
Filename
6069837
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