DocumentCode
2782262
Title
Optimum-Capacity MIMO Satellite Broadcast System: Conceptual Design for LOS Channels
Author
Schwarz, R.T. ; Knopp, A. ; Lankl, B. ; Ogermann, D. ; Hofmann, C.A.
Author_Institution
Dept. for Satellite Commun., Fed. Office of the Bundeswehr for Inf. Technol., Koblenz
fYear
2008
fDate
26-28 Aug. 2008
Firstpage
66
Lastpage
71
Abstract
In line-of-sight (LOS) radio channels maximum multiple input multiple output (MIMO) channel capacity is obtained if an orthogonal MIMO channel transfer matrix is available. For the special case of the MIMO satellite channel, we will analytically derive a design prescript that allows for the construction of orthogonal channel matrices via the explicit positioning of two satellite antennas in the geostationary orbit. Simultaneously, a particular arrangement of an arbitrary number of ground station antennas placed on earth is assumed. In a computer simulation this conceptual design rule is illustrated and verified with a satellite communication link consisting of both a MIMO uplink channel and a MIMO downlink channel. The uplink is established between two anchor stations and a satellite system, also equipped with two antenna elements. In downlink direction the information is transferred from the two-antenna satellite system to a mobile receiver with an arbitrary number of antenna elements. The MIMO capacity optimization strategy is shown to exceed at least 90% of its theoretical maximum in all cases, nearly doubling the data rate compared to ordinary two- satellite MIMO systems, which are currently found in literature.
Keywords
MIMO communication; antenna arrays; channel capacity; direct broadcasting by satellite; matrix algebra; wireless channels; channel capacity; channel transfer matrix; ground station antennas; line-of-sight radio channels; maximum multiple input multiple output; optimum-capacity MIMO satellite broadcast system; satellite channel; satellite communication link; Channel capacity; Computer simulation; Directive antennas; Downlink; MIMO; Mobile antennas; Satellite antennas; Satellite broadcasting; Satellite communication; Satellite ground stations;
fLanguage
English
Publisher
ieee
Conference_Titel
Advanced Satellite Mobile Systems, 2008. ASMS 2008. 4th
Conference_Location
Bologna
Print_ISBN
978-1-4244-2160-2
Type
conf
DOI
10.1109/ASMS.2008.19
Filename
4620242
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