DocumentCode
2823803
Title
Turbo Decoder Development in Regenerative Communications Satellites
Author
Lestriez, Bruno ; Perez, Eduardo Rodriguez
Author_Institution
VLSI Group, Alcatel Alenia Space Espana, Madrid
fYear
2006
fDate
14-15 Sept. 2006
Firstpage
8
Lastpage
12
Abstract
For regenerative telecom satellite systems, the turbo decoder has become a basic component of the on-board processing (OBP). This paper presents the algorithm selection choices and the test bench policy during the design process of a communication system critical block such as a turbo decoder compliant with the DVB-RCS standard (digital video broadcast-return channel satellite). The architecture, based on the max-log-map algorithm, is described emphasising results and advantages of the storage requirement reduction policy applied. Secondly, the chosen test policy is presented, it has considered the specific Space environment requirements and difficulties to fulfil performance evaluations of some complex algorithms in a short period of time. This method has allowed a fast debugging and fine-tuning of the design in order to get the best area, frequency, and performance trade-off, together with having sped-up bit error rate (BER) measurements to just days when normally it would have required weeks of operation
Keywords
decoding; digital video broadcasting; error statistics; satellite communication; turbo codes; BER; DVB-RCS standard; bit error rate; digital video broadcast; max-log-map algorithm; regenerative communications satellite; return channel satellite; storage requirement reduction policy; test bench policy; turbo decoder development; Algorithm design and analysis; Artificial satellites; Bit error rate; Communication standards; Decoding; Digital video broadcasting; Process design; Satellite broadcasting; System testing; Telecommunications;
fLanguage
English
Publisher
ieee
Conference_Titel
Satellite and Space Communications, 2006 International Workshop on
Conference_Location
Madrid
Print_ISBN
1-4244-0118-6
Electronic_ISBN
1-4244-0119-4
Type
conf
DOI
10.1109/IWSSC.2006.255979
Filename
4023224
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