Presentation 1996/10/18
Ultra Multiple-Beam Forming Technique Using Microwave FFT Circuits for the Future Communication Satellite Antennas
Osamu KOBAYASHI, Takashi OHIRA, Kenji UENO, Hiroyo OGAWA,
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Abstract(in Japanese) (See Japanese page)
Abstract(in English) A novel configuration of a satellite-borne antenna system is presented for the next generation of geostationary communication satellites. The system adopts a phased array fed reflector antenna, and microwave FFT circuits in the feeding circuit of the phased array, to generate multiple beams within a small area. It is confirmed that about one hundred beams can be simultaneously generated within the circle of several degrees in diameter, using a 14 mφ reflector antenna that satisfy the desired antenna gain.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) Ultra multiple-beam forming technique / reflector antenna / phased array antenna / microwave FFT circuit / geostationary communication satellite / antenna pattern
Paper # SAT96-73,CS96-106
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Committee SAT
Conference Date 1996/10/18(1days)
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Registration To Satellite Telecommunications (SAT)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Ultra Multiple-Beam Forming Technique Using Microwave FFT Circuits for the Future Communication Satellite Antennas
Sub Title (in English)
Keyword(1) Ultra multiple-beam forming technique
Keyword(2) reflector antenna
Keyword(3) phased array antenna
Keyword(4) microwave FFT circuit
Keyword(5) geostationary communication satellite
Keyword(6) antenna pattern
1st Author's Name Osamu KOBAYASHI
1st Author's Affiliation NTT Wireless Systems Laboratories()
2nd Author's Name Takashi OHIRA
2nd Author's Affiliation NTT Wireless Systems Laboratories
3rd Author's Name Kenji UENO
3rd Author's Affiliation NTT Wireless Systems Laboratories
4th Author's Name Hiroyo OGAWA
4th Author's Affiliation NTT Wireless Systems Laboratories
Date 1996/10/18
Paper # SAT96-73,CS96-106
Volume (vol) vol.96
Number (no) 316
Page pp.pp.-
#Pages 8
Date of Issue