DocumentCode :
392353
Title :
A dynamic error concealment for video transmission over noisy channels
Author :
Kung, Wei-Ying ; Kim, Chang-Su ; Kuo, C. C Jay
Author_Institution :
Dept. of Electr. Eng., Univ. of Southern California, Los Angeles, CA, USA
Volume :
2
fYear :
2002
fDate :
17-21 Nov. 2002
Firstpage :
1769
Abstract :
A dynamic mode-weighted error concealment method is proposed for video packets transmitted over noisy channels. We first introduce two error concealment approaches. One is to reconstruct lost pixels by interpolating candidate pixels indicated by neighboring motion vectors. The other is to estimate the motion vector by a side matching algorithm. Based on the two error concealment approaches, four corrupted block reconstruction modes are described. Then, the value of an erroneous pixel is replaced by a weighted sum of those reconstructed by two modes. The property of the weighted sum is analyzed. It is shown that the optimal weighting coefficients can be expressed as a formula in terms of the error variance and the correlation coefficients associated with the reconstruction modes. Furthermore, based on the decoder-based error tracking model, these weighting coefficients are dynamically updated to minimize the instant propagation and concealment error variance. Extensive simulations are provided to demonstrate that the proposed method can lead to a satisfying performance in an error-prone environment.
Keywords :
data compression; decoding; error correction; error statistics; image reconstruction; interpolation; minimisation; motion estimation; telecommunication channels; video coding; visual communication; block reconstruction modes; correlation coefficients; dynamic error concealment; error tracking; error variance; interpolation; lost pixel reconstruction; motion vector estimation; noisy channels; optimal weighting coefficients; side matching algorithm; video compression; video packets; video transmission; Decoding; Discrete cosine transforms; Frequency; Image reconstruction; Image sequences; Motion estimation; Reliability engineering; Resilience; Robustness; Video compression;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Global Telecommunications Conference, 2002. GLOBECOM '02. IEEE
Print_ISBN :
0-7803-7632-3
Type :
conf
DOI :
10.1109/GLOCOM.2002.1188502
Filename :
1188502
Link To Document :
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