DocumentCode
1319713
Title
Onboard switching for ATM via satellite
Author
Gilderson, Jim ; Cherkaoui, Jafaar
Author_Institution
Spar Space Syst., Montreal, Que., Canada
Volume
35
Issue
7
fYear
1997
fDate
7/1/1997 12:00:00 AM
Firstpage
66
Lastpage
70
Abstract
This article presents an architecture for onboard ATM switching. The constraints of the space environment and the associated delays (especially with geostationary satellites) create often conflicting requirements for the implementation of ATM via satellite. These requirements must be considered when designing onboard equipment. The article suggests that the use of MF-TDMA framing and of physical-layer scheduling as a preswitching stage allows for the use of standard switch fabrics onboard with additional fault tolerance and buffer mechanisms. The details of the scheduler and of the RF front end, including demodulation and demultiplexing, are presented as well as suitable switch fabrics and their performance/implementation impact. ATM is now widely considered the delivery medium for the broadband services of the future. This fact has also attracted the attention of the satellite community. Current satellite ATM trials have concentrated on trunking applications using available broadcast satellites. However, the US FCC filings for Ka band satellites, as well as Canadian W and European initiatives, have focused on a new generation of digital regenerative multibeam onboard processing satellites
Keywords
access protocols; asynchronous transfer mode; broadband networks; buffer storage; demodulation; demultiplexing; digital radio; satellite communication; signal processing; time division multiple access; Canada; European initiatives; FCC; Ka band satellites; MF-TDMA framing; RF front end; broadband services; broadcast satellites; buffer mechanisms; delays; demodulation; demultiplexing; digital regenerative multibeam onboard processing satellites; fault tolerance; geostationary satellites; onboard ATM switching architecture; onboard equipment; physical-layer scheduling; preswitching stage; satellite ATM trial; space environment; standard switch fabrics; switch fabrics; trunking applications; Asynchronous transfer mode; Delay; Demodulation; Demultiplexing; FCC; Fabrics; Fault tolerance; Radio frequency; Satellite broadcasting; Switches;
fLanguage
English
Journal_Title
Communications Magazine, IEEE
Publisher
ieee
ISSN
0163-6804
Type
jour
DOI
10.1109/35.601744
Filename
601744
Link To Document