DocumentCode
4201
Title
A Poisson Hidden Markov Model for Multiview Video Traffic
Author
Rossi, Lorenzo ; Chakareski, Jacob ; Frossard, Pascal ; Colonnese, Stefania
Author_Institution
DIET Dept., Sapienza Univ. di Roma, Rome, Italy
Volume
23
Issue
2
fYear
2015
fDate
Apr-15
Firstpage
547
Lastpage
558
Abstract
Multiview video has recently emerged as a means to improve user experience in novel multimedia services. We propose a new stochastic model to characterize the traffic generated by a Multiview Video Coding (MVC) variable bit-rate source. To this aim, we resort to a Poisson hidden Markov model (P-HMM), in which the first (hidden) layer represents the evolution of the video activity and the second layer represents the frame sizes of the multiple encoded views. We propose a method for estimating the model parameters in long MVC sequences. We then present extensive numerical simulations assessing the model´s ability to produce traffic with realistic characteristics for a general class of MVC sequences. We then extend our framework to network applications where we show that our model is able to accurately describe the sender and receiver buffers behavior in MVC transmission. Finally, we derive a model of user behavior for interactive view selection, which, in conjunction with our traffic model, is able to accurately predict actual network load in interactive multiview services.
Keywords
hidden Markov models; stochastic processes; telecommunication traffic; television receivers; three-dimensional television; video coding; MVC transmission; MVC variable bit-rate source; Poisson hidden Markov model; multimedia services; multiview video coding; numerical simulations; receiver; three-dimensional TV; traffic model; Adaptation models; Biological system modeling; Encoding; Estimation; Hidden Markov models; Load modeling; Streaming media; Hidden Markov models; multiview video; telecommunication traffic; three-dimensional TV;
fLanguage
English
Journal_Title
Networking, IEEE/ACM Transactions on
Publisher
ieee
ISSN
1063-6692
Type
jour
DOI
10.1109/TNET.2014.2303162
Filename
6748028
Link To Document