DocumentCode :
352265
Title :
Beam forming network design for cluster feeding of scanning antenna
Author :
Kira, F. ; Hori, Toshikazu
Author_Institution :
NTT Network Innovation Labs., Nippon Telegraph & Telephone Corp., Kanagawa, Japan
fYear :
2000
fDate :
2000
Firstpage :
133
Lastpage :
136
Abstract :
This paper proposes a new beamforming network (BFN) for a scanning antenna system that generates a steerable beam using a reflector illuminated by an array of feeding elements. This BFN comprises several variable phase shifters, a power divider, and a Butler matrix (FFT circuit), which is a multibeam matrix network, and forms a primary beam pattern by using the Fourier transform. This BFN can obtain a primary radiation pattern that is very similar to the input signal distribution of the beam port, and does not require deep consideration of the excitation distribution of the antenna elements to obtain the desired pattern. Moreover, the beam pattern generated by this BFN effectively illuminates only the reflector. We confirm that this BFN was able to improve the antenna efficiency by 11%
Keywords :
antenna phased arrays; antenna radiation patterns; beam steering; fast Fourier transforms; multibeam antennas; phase shifters; power dividers; reflector antenna feeds; scanning antennas; BFN; Butler matrix; FFT circuit; Fourier transform; antenna efficiency; beamforming network; cluster feeding; feeding element array; input signal distribution; multibeam matrix network; power divider; primary radiation pattern; reflector; scanning antenna; steerable beam; variable phase shifters; Antenna arrays; Antenna feeds; Antenna radiation patterns; Array signal processing; Butler matrix; Circuits; Fourier transforms; Phase shifters; Power dividers; Reflector antennas;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Phased Array Systems and Technology, 2000. Proceedings. 2000 IEEE International Conference on
Conference_Location :
Dana Point, CA
Print_ISBN :
0-7803-6345-0
Type :
conf
DOI :
10.1109/PAST.2000.858926
Filename :
858926
Link To Document :
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