DocumentCode
2448461
Title
Joint source/FEC rate selection for optimal MPEG-2 video delivery
Author
Frossard, Pascal ; Verscheure, Olivier
Author_Institution
Signal Process. Lab., Swiss Federal Inst. of Technol., Lausanne, Switzerland
Volume
3
fYear
2000
fDate
2000
Firstpage
1301
Abstract
The paper deals with the optimal allocation of MPEG-2 encoding and media-independent FEC rates under a total given bandwidth. The optimality is defined in terms of minimum perceptual end-to-end distortion given a set of video and network parameters. We first derive the set of equations leading to the residual loss process parameters. That is, the packet loss ratio and the average burst length after FEC decoding. We then show that the perceptual source distortion decreases exponentially with the MPEG-2 source rate. We also demonstrate that the perceptual distortion due to data loss is directly proportional to the number of lost macroblocks, and therefore decreases with the amount of channel protection. Finally, we derive the global set of equations that lead to the optimal dynamic rate allocation. The optimal distribution is shown to outperform classical FEC schemes, thanks to its adaptivity to the scene complexity, to the available bandwidth and to the network conditions
Keywords
forward error correction; multimedia systems; packet switching; video coding; FEC decoding; MPEG-2 encoding; MPEG-2 source rate; average burst length; channel protection; classical FEC schemes; data loss; global set; joint source/FEC rate selection; lost macroblocks; media-independent FEC rates; minimum perceptual end-to-end distortion; network conditions; network parameters; optimal MPEG-2 video delivery; optimal allocation; optimal distribution; optimal dynamic rate allocation; packet loss ratio; perceptual distortion; perceptual source distortion; residual loss process parameters; scene complexity; Bandwidth; Degradation; Delay; Digital video broadcasting; Equations; Forward error correction; Protection; Satellite broadcasting; Transform coding; Video compression;
fLanguage
English
Publisher
ieee
Conference_Titel
Multimedia and Expo, 2000. ICME 2000. 2000 IEEE International Conference on
Conference_Location
New York, NY
Print_ISBN
0-7803-6536-4
Type
conf
DOI
10.1109/ICME.2000.871005
Filename
871005
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