DocumentCode :
952160
Title :
Modeling of transmission-loss-induced distortion in decoded video
Author :
Wang, Yao ; Wu, Zhenyu ; Boyce, Jill M.
Author_Institution :
Polytech. Univ. Brooklyn, NY, USA
Volume :
16
Issue :
6
fYear :
2006
fDate :
6/1/2006 12:00:00 AM
Firstpage :
716
Lastpage :
732
Abstract :
This paper analyzes the distortion in decoded video caused by random packet losses in the underlying transmission network. A recursion model is derived that relates the average channel-induced distortion in successive P-frames. The model is applicable to all video encoders using the block-based motion-compensated prediction framework (including the H.261/263/264 and MPEG1/2/4 video coding standards) and allows for any motion-compensated temporal concealment method at the decoder. The model explicitly considers the interpolation operation invoked for motion-compensated temporal prediction and concealment with sub-pel motion vectors. The model also takes into account the two new features of the H.264/AVC standard, namely intraprediction and inloop deblocking filtering. A comparison with simulation data shows that the model is very accurate over a large range of packet loss rates and encoder intrablock rates. The model is further adapted to characterize the channel distortion in subsequent received frames after a single lost frame. This allows one to easily evaluate the impact of a single frame loss.
Keywords :
decoding; distortion; filtering theory; motion compensation; video coding; video communication; average channel-induced distortion; block-based motion compensation; decoded video; inloop deblocking filtering; random packet losses; temporal concealment method; transmission-loss-induced distortion; Automatic voltage control; Decoding; Filtering; Filters; Intelligent networks; Interpolation; Motion compensation; Predictive models; Propagation losses; Video coding; Deblocking filter; H.264/AVC; end-to-end distortion; error concealment; error propagation; intraprediction; packet loss;
fLanguage :
English
Journal_Title :
Circuits and Systems for Video Technology, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8215
Type :
jour
DOI :
10.1109/TCSVT.2006.875203
Filename :
1637512
Link To Document :
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