DocumentCode
110186
Title
An Adaptive Mechanism for Optimal Content Download in Wireless Networks
Author
de Fez, Ismael ; Guerri, Juan Carlos
Author_Institution
Inst. of Telecommun. & Multimedia Applic., Univ. Politec. de Valencia, València, Spain
Volume
16
Issue
4
fYear
2014
fDate
Jun-14
Firstpage
1140
Lastpage
1155
Abstract
This paper presents an adaptive mechanism for improving the content download in wireless environments. The solution is based on the use of the file delivery over unidirectional transport (FLUTE) protocol in multicast networks, which reduce considerably the bandwidth when there are many users interested in the same contents. Specifically, the system proposed reduces the average download time of clients within the coverage area, thus improving the Quality of Experience. To that extent, clients send periodically feedback messages to the server reporting the losses they are experiencing. With this information, the server decides which is the optimum application layer-forward error correction (AL-FEC) code rate that minimizes the average download time, taking into account the channel bandwidth, and starts sending data with that code rate. The system proposed is evaluated in various scenarios, considering different distributions of losses in the coverage area. Results show that the adaptive solution proposed is very suitable in wireless networks with limited bandwidth.
Keywords
client-server systems; forward error correction; multicast protocols; quality of experience; radio networks; FLUTE protocol; adaptive mechanism; channel bandwidth; feedback message; file delivery over unidirectional transport; multicast network; optimal content download; optimum application layer-forward error correction code; quality of experience; wireless networks; Adaptive systems; Bandwidth; Digital video broadcasting; Multimedia communication; Protocols; Servers; Wireless networks; Adaptive codes; application layer–forward error correction (AL-FEC); file delivery over unidirectional transport (FLUTE); low density parity check (LDPC); multicast wireless networks;
fLanguage
English
Journal_Title
Multimedia, IEEE Transactions on
Publisher
ieee
ISSN
1520-9210
Type
jour
DOI
10.1109/TMM.2014.2307155
Filename
6746196
Link To Document