DocumentCode :
758907
Title :
Embedded Multiple Description Coding of Video
Author :
Verdicchio, Fabio ; Munteanu, Adrian ; Gavrilescu, Augustin I. ; Cornelis, Jan ; Schelkens, Peter
Author_Institution :
Dept. of Electron. & Informatics, Vrije Univ., Brussels
Volume :
15
Issue :
10
fYear :
2006
Firstpage :
3114
Lastpage :
3130
Abstract :
Real-time delivery of video over best-effort error-prone packet networks requires scalable erasure-resilient compression systems in order to 1) meet the users´ requirements in terms of quality, resolution, and frame-rate; 2) dynamically adapt the rate to the available channel capacity; and 3) provide robustness to data losses, as retransmission is often impractical. Furthermore, the employed erasure-resilience mechanisms should be scalable in order to adapt the degree of resiliency against transmission errors to the varying channel conditions. Driven by these constraints, we propose in this paper a novel design for scalable erasure-resilient video coding that couples the compression efficiency of the open-loop architecture with the robustness provided by multiple description coding. In our approach, scalability and packet-erasure resilience are jointly provided via embedded multiple description scalar quantization. Furthermore, a novel channel-aware rate-allocation technique is proposed that allows for shaping on-the-fly the output bit rate and the degree of resiliency without resorting to channel coding. As a result, robustness to data losses is traded for better visual quality when transmission occurs over reliable channels, while erasure resilience is introduced when noisy links are involved. Numerical results clearly demonstrate the advantages of the proposed approach over equivalent codec instantiations employing 1) no erasure-resilience mechanisms, 2) erasure-resilience with nonscalable redundancy, or 3) data-partitioning principles
Keywords :
channel capacity; image resolution; packet switching; quantisation (signal); video coding; video communication; best-effort error-prone packet networks; channel capacity; channel-aware rate-allocation technique; codec; data-partitioning principles; embedded multiple description scalar quantization; embedded multiple description video coding; erasure-resilient compression systems; multiple description coding; open-loop architecture; real-time video delivery; scalable erasure-resilient video coding; visual quality; Bit rate; Channel capacity; Couplings; Quantization; Real time systems; Resilience; Robustness; Scalability; Video coding; Video compression; Multiple description coding; packet erasure resilience; scalable video coding;
fLanguage :
English
Journal_Title :
Image Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1057-7149
Type :
jour
DOI :
10.1109/TIP.2006.877495
Filename :
1703598
Link To Document :
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