DocumentCode
2659993
Title
Multiple description coding with automatic control for video transmission over wireless networks
Author
Pereira, Manuela ; Antonini, Marc
Author_Institution
IT-Lab., Universidade da Baira Interior, Portugal
Volume
2
fYear
2005
fDate
13-16 June 2005
Firstpage
1112
Abstract
Multiple description coding (MDC) has proved to he a powerful tool for joint source/channel coding applications. Indeed, MDC offers the possibility of controlling easily the amount of redundancy introduced in the transmitted signal while maintaining good quality decoding even when the channel is noiseless. However, to our knowledge, few work have been dedicated to the tuning of the redundancy parameter according to the channel noise level. Moreover, in case of non stationary channel a solution must be found to adapt automatically the amount of redundancy in order to maintain transmission quality. In this paper, we propose a MDC method that estimates the amount of source redundancy that must be dispatched between the different descriptors according to the channel state. This method includes a wavelet transform and an optimal bit allocation process of the binary resource across the different descriptors and the different wavelet subbands. It takes into account the knowledge of the channel impulse response that is time variable and reflects accurately the propagation conditions encountered in a real environment. We focus on radio frequency wireless transmission. The proposed method is well suited for wideband mobile communications where the channel can be modeled as a superposition of a discrete number of paths.
Keywords
combined source-channel coding; decoding; mobile radio; multimedia communication; telecommunication control; video coding; video communication; wavelet transforms; wireless channels; channel impulse response; decoding; joint source-channel coding; multiple description coding; optimal bit allocation process; radio frequency wireless transmission; video transmission automatic control; wavelet transform; wideband mobile communications; wireless networks; Automatic control; Bit rate; Channel coding; Decoding; Noise level; Radio frequency; State estimation; Time factors; Wavelet transforms; Wireless networks;
fLanguage
English
Publisher
ieee
Conference_Titel
Wireless Networks, Communications and Mobile Computing, 2005 International Conference on
Print_ISBN
0-7803-9305-8
Type
conf
DOI
10.1109/WIRLES.2005.1549568
Filename
1549568
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