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Study of LEO-SAT microwave link for broad-band mobile satellite communication systemIn the field of mobile satellite communications, a system based on low-earth-orbit satellites (LEO-SAT's) such as the Iridium system has been proposed. The LEO-SAT system is able to offer mobile telecommunication services in high-latitude areas. Rain degradation, fading and shadowing are also expected to be decreased when the system is operated at a high elevation angle. Furthermore, the propagation delay generated in the LEO-SAT system is less pronounced than that in the geostationary orbit satellite (GEO-SAT) system and, in voice services, the effect of the delay is almost negligible. We proposed a concept of a broad-band mobile satellite communication system with LEO-SAT's and Optical ISL. In that system, a fixed L-band (1.6/1.5 GHz) multibeam is used to offer narrow band service to the mobile terminals in the entire area covered by a LEO-SAT and steerable Ka-band (30/20 GHz) spot beams are used for the wide band service. In this paper, we present results of a study of LEO-SAT microwave link between a satellite and a mobile terminal for a broad-band mobile satellite communication system. First, the results of link budget calculations are presented and the antennas mounted on satellites are shown. For a future mobile antenna technology, we also show digital beamforming (DBF) techniques. DBF, together with modulation and/or demodulation, is becoming a key technique for mobile antennas with advanced functions such as antenna pattern calibration, correction, and radio interference suppression. In this paper, efficient DBF techniques for transmitting and receiving are presented. Furthermore, an adaptive array antenna system suitable for this LEO-SAT is presented.
Document ID
19940018296
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Fujise, Masayuki
(ATR Optical and Radio Communications Research Labs. Kyoto, Japan)
Chujo, Wataru
(ATR Optical and Radio Communications Research Labs. Kyoto, Japan)
Chiba, Isamu
(ATR Optical and Radio Communications Research Labs. Kyoto, Japan)
Furuhama, Yoji
(ATR Optical and Radio Communications Research Labs. Kyoto, Japan)
Kawabata, Kazuaki
(Toshiba Corp. Kawasaki, Japan)
Konishi, Yoshihiko
(Mitsubishi Electric Corp. Tokyo, Japan)
Date Acquired
September 6, 2013
Publication Date
January 1, 1993
Publication Information
Publication: JPL, Proceedings of the Third International Mobile Satellite Conference (IMSC 1993)
Subject Category
Communications And Radar
Accession Number
94N22769
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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