DocumentCode
1766427
Title
Resource-Allocation Frameworks for Network-Coded Layered Multimedia Multicast Services
Author
Tassi, Andrea ; Chatzigeorgiou, Ioannis ; Vukobratovic, Dejan
Author_Institution
Sch. of Comput. & Commun., Lancaster Univ., Lancaster, UK
Volume
33
Issue
2
fYear
2015
fDate
Feb. 2015
Firstpage
141
Lastpage
155
Abstract
The explosive growth of content-on-the-move, such as video streaming to mobile devices, has propelled research on multimedia broadcast and multicast schemes. Multirate transmission strategies have been proposed as a means of delivering layered services to users experiencing different downlink channel conditions. In this paper, we consider point-to-multipoint layered service delivery across a generic cellular system and improve it by applying different random linear network coding approaches. We derive packet error probability expressions and use them as performance metrics in the formulation of resource-allocation frameworks. The aim of these frameworks is both the optimization of the transmission scheme and the minimization of the number of broadcast packets on each downlink channel, while offering service guarantees to a predetermined fraction of users. As a case of study, our proposed frameworks are then adapted to the LTE-A standard and the eMBMS technology. We focus on the delivery of a video service based on the H.264/SVC standard and demonstrate the advantages of layered network coding over multirate transmission. Furthermore, we establish that the choice of both the network coding technique and the resource-allocation method play a critical role on the network footprint, as well as the quality of each received video layer.
Keywords
Long Term Evolution; channel allocation; data compression; error statistics; minimisation; multicast communication; multimedia communication; network coding; resource allocation; video coding; H.264 standard; LTE-A standard; SVC standard; broadcast packet; downlink channel; eMBMS technology; generic cellular system; layered network coding; multimedia multicast service; multirate transmission; packet error probability expression; point-to-multipoint layered service delivery; random linear network coding approach; resource-allocation framework; transmission scheme; video service; Encoding; Multimedia communication; Network coding; Optimization; Resource management; Static VAr compensators; Streaming media; H.264/SVC; LTE-A; Network coding; eMBMS; mobile communication; multicast communication; multimedia communication; resource allocation;
fLanguage
English
Journal_Title
Selected Areas in Communications, IEEE Journal on
Publisher
ieee
ISSN
0733-8716
Type
jour
DOI
10.1109/JSAC.2014.2384231
Filename
6994250
Link To Document