DocumentCode
1968504
Title
Designing of a Novel Optical Two-Layered Satellite Network
Author
Yongjun, LI ; Shanghong, ZHAO ; Jili, WU ; Tian, LI ; Rui, HOU ; Lan, LIU
Author_Institution
Network Eng. Dept., Air force Eng. Univ., Xi´´an
Volume
4
fYear
2008
fDate
12-14 Dec. 2008
Firstpage
976
Lastpage
979
Abstract
Necessary condition of single continuous coverage is deduced with technique of Coverage Street, to satisfy the rigorous ATP (acquisition tracking pointing) demanding of optical satellite communication, a novel zero phasing factor, two-layered optical satellite network of LEO/MEO is designed according to the technique above. Lower layered satellite constellation of zero phasing factor has the stable logical topology of MESH, the ranges of azimuth and elevation are much less than that of non-zero phasing factor, which is very fit for optical inter-satellite links. In order to compensate bad coverage for equatorial region of LEO, MEO satellites which are positioned in two orbits are introduced. Spacing connections of two-layered satellite are computed and coverage performance is simulated. Results show the network brought forward can meet the ATP demand and provide 99.9% average coverage of global. This system should be considered as the reference of building up the optical satellite network of global coverage in China.
Keywords
optical links; satellite links; telecommunication network topology; LEO satellite; MEO satellite; MESH; acquisition tracking point; optical two-layered satellite network design; stable logical topology; Artificial satellites; Azimuth; Computational modeling; Low earth orbit satellites; Network topology; Optical design; Optical design techniques; Optical fiber networks; Satellite communication; Satellite constellations; inter-satellite links (ISL); multi-layered satellite networks; optical satellite communication;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Science and Software Engineering, 2008 International Conference on
Conference_Location
Wuhan, Hubei
Print_ISBN
978-0-7695-3336-0
Type
conf
DOI
10.1109/CSSE.2008.1262
Filename
4722781
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