DocumentCode :
1105934
Title :
Analysis of an advanced satellite digital audio broadcasting system and complementary terrestrial gap-filler single frequency network
Author :
De Gaudenzi, Riccardo ; Giannetti, Filippo
Author_Institution :
RF Syst. Div., Eur. Space Res. & Technol. Centre, Noordwijk, Netherlands
Volume :
43
Issue :
2
fYear :
1994
fDate :
5/1/1994 12:00:00 AM
Firstpage :
194
Lastpage :
210
Abstract :
Digital audio broadcasting (DAB) to mobile and fixed users exploiting the latest advances in compression coding, and transmission techniques represents an appealing application for future satellite systems. This paper introduces coded quasi-orthogonal code division multiplexing (CQO-CDM) as a transmission technique for digital audio broadcasting. The proposed technique performs well over both the L-band satellite fading channel and the terrestrial gap-filler type of transmission. Preliminary link budgets based on extensive computer simulation results are provided. Numerical results show that remarkable overall capacity can be achieved by using a constellation of satellites in highly elliptical orbit (HEO) complemented by a terrestrial gap-filler network. A variety of transmission rates and hence broadcasting services can be realized with the proposed transmission technique. It is shown that a geostationary orbit (GEO) satellite can provide limited service availability to the mobile user, but can also be used for experimental purposes
Keywords :
digital radio systems; fading; multiplexing; radio broadcasting; satellite relay systems; telecommunication channels; GEO; HEO; L-band; broadcasting services; coded quasi-orthogonal code division multiplexing; compression coding; computer simulation; digital audio broadcasting; geostationary orbit satellite; highly elliptical orbit; link budget; satellite fading channel; satellite systems; service availability; single frequency network; terrestrial gap-filler; terrestrial gap-filler network; transmission rates; transmission techniques; Availability; Bandwidth; Code division multiplexing; Digital audio broadcasting; Fading; Performance analysis; Radio frequency; Satellite broadcasting; Space technology; Spread spectrum communication;
fLanguage :
English
Journal_Title :
Vehicular Technology, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9545
Type :
jour
DOI :
10.1109/25.293638
Filename :
293638
Link To Document :
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