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Results of multiband (L, S, Ku band) propagation measurements and model for high elevation angle land mobile satellite channelSignal propagation in the land mobile satellite (LMS) service is an important consideration due to its critical impact on the overall economic and commercial viability of the system. At frequencies allocated for LMS systems, shadowing of the line-of-sight (LOS) signal as well as multipath propagation phenomena can severely impair the link availability. In particular, as most of the studies have shown, the shadowing of LOS signal causes long and deep fades in a variety of mobile environments due to the inherent nature of the channel between the satellite and a mobile. Roadside obstacles, such as buildings, trees, utility poles etc., in the immediate vicinity of a mobile and the surrounding terrain are major sources of signal shadowing in LMS links. Therefore, a proper knowledge of link degradation is essential for cost-effective planning of a satellite based mobile communication system. The results of a propagation campaign undertaken to characterize the fading nature of LMS channel at high elevation angles is presented. It was envisaged that one of the most important physical variables contributing to the amount of LOS signal shadowing is the elevation angle of the satellite. At higher elevation angles to the satellite, less obstructions in the direct satellite-to-mobile path would therefore amount to statistically better link availability. Narrowband channel measurements were carried out at three RF frequencies corresponding to L (1.3 GHz), S (2.32/2.45 GHz), and Ku (10.4 GHz) bands. The campaign itself was divided into two phases to observe the effects of seasonal variation of foliage on the roadside trees. Phase measurements were carried out in September 1991 and in April 1992. Some important aspects from the statistical analysis of the propagation data are presented.
Document ID
19940010197
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Parks, M. A. N.
(Surrey Univ. Guildford, United Kingdom)
Butt, G.
(Surrey Univ. Guildford, United Kingdom)
Evans, Barry G.
(Surrey Univ. Guildford, United Kingdom)
Richharia, M.
(International Maritime Satellite Organization London, United Kingdom)
Date Acquired
September 6, 2013
Publication Date
August 1, 1993
Publication Information
Publication: JPL, Proceedings of the Seventeenth NASA Propagation Experimenters Meeting (NAPEX 17) and the Advanced Communications Technology Satellite (ACTS) Propagation Studies Miniworkshop p 193-202 (SEE N94-14
Subject Category
Communications And Radar
Accession Number
94N14670
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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