DocumentCode :
1771547
Title :
AntMind: Enhancing error protection for video streaming in wireless networks
Author :
Immich, Roger ; Borges, Pedro ; Cerqueira, Eduardo ; Curado, Marilia
Author_Institution :
Univ. of Coimbra, Coimbra, Portugal
fYear :
2014
fDate :
18-20 June 2014
Firstpage :
1
Lastpage :
6
Abstract :
On-line video services are becoming a large part of the daily routines of people all over the world, where most of the content is accessed through wireless networks. Therefore, it is of ever growing importance that the negative aspects of these types of error prone networks are lessened in order to ensure adequate quality of the delivered video streams. Forward Error Correction (FEC) techniques allow the stream to be protected with an amount of redundancy to preserve the video quality during transmission. Nevertheless, some FEC schemes do not make an efficient usage of the available network resources due to unnecessary use of redundancy as a result of video-unawareness. The adaptive FEC mechanism proposed in this paper uses the motion intensity characteristics of the video and the network loss state to deliver the video streaming with adequate Quality of Experience (QoE), while keeping the use of network resources to a minimum level. It does so from a combined use of a Random Neural Network (RNN) for motion intensity classification and an Ant Colony Optimization (ACO) scheme for dynamic redundancy allocation. QoE metrics are used to assess the performance of the mechanism showing its advantages over adaptive and nonadaptive protection schemes.
Keywords :
ant colony optimisation; forward error correction; neural nets; radio networks; telecommunication computing; video coding; video streaming; adaptive protection schemes; adequate Quality of Experience; ant colony optimization; antmind enhancing error protection; dynamic redundancy allocation; error prone networks; forward error correction; motion intensity characteristics; motion intensity classification; network loss state; nonadaptive protection schemes; on-line video services; random neural network; video adequate quality; video streaming; video transmission; video-unawareness; wireless networks; Forward error correction; Quality assessment; Redundancy; Streaming media; Video recording; Video sequences; Wireless networks; Ant Colony Optimization; Forward Error Correction (FEC); Motion Vectors (MV); Neural networks; QoE; Unequal Error Protection (UEP); Video-aware FEC;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Smart Communications in Network Technologies (SaCoNeT), 2014 International Conference on
Conference_Location :
Vilanova i la Geltru
Type :
conf
DOI :
10.1109/SaCoNeT.2014.6867776
Filename :
6867776
Link To Document :
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