DocumentCode
1036013
Title
Joint source-channel coding for wireless object-based video communications utilizing data hiding
Author
Wang, Haohong ; Tsaftaris, Sotirios A. ; Katsaggelos, Aggelos K.
Volume
15
Issue
8
fYear
2006
Firstpage
2158
Lastpage
2169
Abstract
In recent years, joint source-channel coding for multimedia communications has gained increased popularity. However, very limited work has been conducted to address the problem of joint source-channel coding for object-based video. In this paper, we propose a data hiding scheme that improves the error resilience of object-based video by adaptively embedding the shape and motion information into the texture data. Within a rate-distortion theoretical framework, the source coding, channel coding, data embedding, and decoder error concealment are jointly optimized based on knowledge of the transmission channel conditions. Our goal is to achieve the best video quality as expressed by the minimum total expected distortion. The optimization problem is solved using Lagrangian relaxation and dynamic programming. The performance of the proposed scheme is tested using simulations of a Rayleigh-fading wireless channel, and the algorithm is implemented based on the MPEG-4 verification model. Experimental results indicate that the proposed hybrid source-channel coding scheme significantly outperforms methods without data hiding or unequal error protection
Keywords
Rayleigh channels; combined source-channel coding; data encapsulation; dynamic programming; video coding; video communication; wireless channels; Lagrangian relaxation; Rayleigh-fading wireless channel; data hiding; dynamic programming; hybrid source-channel coding scheme; multimedia communications; optimization problem; wireless object-based video communications; Channel coding; Data encapsulation; Decoding; Lagrangian functions; Multimedia communication; Rate-distortion; Resilience; Shape; Source coding; Wireless communication; Data embedding; MPEG-4 standard; data hiding; joint source-channel coding; object-based video; rate-distortion; unequal error protection (UEP); video coding; video communications; wireless channel;
fLanguage
English
Journal_Title
Image Processing, IEEE Transactions on
Publisher
ieee
ISSN
1057-7149
Type
jour
DOI
10.1109/TIP.2006.875194
Filename
1658082
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