DocumentCode :
756972
Title :
Rate-distortion optimized hybrid error control for real-time packetized video transmission
Author :
Zhai, Fan ; Eisenberg, Yiftach ; Pappas, Thrasyvoulos N. ; Berry, Randall ; Katsaggelos, Aggelos K.
Author_Institution :
Texas Instruments, Dallas, TX, USA
Volume :
15
Issue :
1
fYear :
2006
Firstpage :
40
Lastpage :
53
Abstract :
The problem of application-layer error control for real-time video transmission over packet lossy networks is commonly addressed via joint source-channel coding (JSCC), where source coding and forward error correction (FEC) are jointly designed to compensate for packet losses. In this paper, we consider hybrid application-layer error correction consisting of FEC and retransmissions. The study is carried out in an integrated joint source-channel coding (IJSCC) framework, where error resilient source coding, channel coding, and error concealment are jointly considered in order to achieve the best video delivery quality. We first show the advantage of the proposed IJSCC framework as compared to a sequential JSCC approach, where error resilient source coding and channel coding are not fully integrated. In the IJSCC framework, we also study the performance of different error control scenarios, such as pure FEC, pure retransmission, and their combination. Pure FEC and application layer retransmissions are shown to each achieve optimal results depending on the packet loss rates and the round-trip time. A hybrid of FEC and retransmissions is shown to outperform each component individually due to its greater flexibility.
Keywords :
combined source-channel coding; error correction codes; forward error correction; optimal control; telecommunication control; video coding; video communication; application layer retransmissions; application-layer error control; error concealment; error resilient source coding; forward error correction; integrated joint source-channel coding; packet lossy networks; rate-distortion optimized hybrid error control; real-time packetized video transmission; video delivery quality; Automatic repeat request; Channel coding; Error correction; Forward error correction; Propagation losses; Quality of service; Rate-distortion; Resilience; Source coding; Streaming media; Error concealment; error control; error resilience; hybrid error control; multimedia streaming; quality of service (QoS); resource allocation; unequal error protection (UEP); Algorithms; Computer Communication Networks; Computer Graphics; Computer Systems; Image Enhancement; Image Interpretation, Computer-Assisted; Information Storage and Retrieval; Numerical Analysis, Computer-Assisted; Signal Processing, Computer-Assisted; Video Recording;
fLanguage :
English
Journal_Title :
Image Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1057-7149
Type :
jour
DOI :
10.1109/TIP.2005.860353
Filename :
1556623
Link To Document :
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