DocumentCode
999491
Title
An unequal packet loss resilience scheme for video over the Internet
Author
Yang, Xiaokang ; Zhu, Ce ; Li, Zheng Guo ; Lin, Xiao ; Ling, Nam
Author_Institution
Inst. for Infocomm Res., Singapore
Volume
7
Issue
4
fYear
2005
Firstpage
753
Lastpage
765
Abstract
We present an unequal packet loss resilience scheme for robust transmission of video over the Internet. By jointly exploiting the unequal importance existing in different levels of syntax hierarchy in video coding schemes, GOP-level and Resynchronization-packet-level Integrated Protection (GRIP) is designed for joint unequal loss protection (ULP) in these two levels using forward error correction (FEC) across packets. Two algorithms are developed to achieve efficient FEC assignment for the proposed GRIP framework: a model-based FEC assignment algorithm and a heuristic FEC assignment algorithm. The model-based FEC assignment algorithm is to achieve optimal allocation of FEC codes based on a simple but effective performance metric, namely distortion-weighted expected length of error propagation, which is adopted to quantify the temporal propagation effect of packet loss on video quality degradation. The heuristic FEC assignment algorithm aims at providing a much simpler yet effective FEC assignment with little computational complexity. The proposed GRIP together with any of the two developed FEC assignment algorithms demonstrates strong robustness against burst packet losses with adaptation to different channel status.
Keywords
Internet; computational complexity; distortion; forward error correction; packet switching; synchronisation; video coding; visual communication; GOP-level; Internet; data partitioning; error propagation; forward error correction; heuristic FEC assignment algorithm; resynchronization-packet-level integrated protection; unequal packet loss resilience scheme; video coding schemes; video quality degradation; video transmission; Degradation; Forward error correction; Heuristic algorithms; Internet; Measurement; Propagation losses; Protection; Resilience; Robustness; Video coding; Data partitioning; error resilience; forward error correction; packet loss resilience; video over the Internet;
fLanguage
English
Journal_Title
Multimedia, IEEE Transactions on
Publisher
ieee
ISSN
1520-9210
Type
jour
DOI
10.1109/TMM.2005.846782
Filename
1468159
Link To Document