Title :
Robust video transmission over correlated mobile fading channels
Author :
Lu, Jianhua ; Letaief, Khaled ; Liou, Ming L.
Author_Institution :
Dept. of Electr. & Electron. Eng., Hong Kong Univ. of Sci. & Technol., Kowloon, Hong Kong
fDate :
8/1/1999 12:00:00 AM
Abstract :
We develop a unique set of techniques to support reliable and efficient video transmission over bandwidth-limited mobile networks. The video coder is based on the H.263 coding standard, while its transmission system design is based on a joint study of combined source and channel coding, diversity reception, and pre/postprocessing techniques. In particular, a finite-state Markov model for representing a correlated fading channel with diversity is developed. Based on this model, a recursive algorithm is further devised for an efficient estimation of block-code performance. By doing so, an important means for finding proper diversity and channel coding schemes for correlated video data in correlated fading channels is obtained. In addition, robust decoding together with a combined spatial-temporal concealment is employed to mitigate the effects of decoding mismatch caused by residual errors. Simulation results confirm that the proposed system can significantly reduce the bursty error effects on the H.263 coded video data while maintaining high transmission efficiency
Keywords :
Markov processes; block codes; coding errors; combined source-channel coding; correlation methods; data compression; decoding; diversity reception; fading channels; land mobile radio; recursive estimation; video coding; visual communication; H.263 coding standard; bandwidth-limited mobile networks; block-code performance; bursty error effects reduction; combined source-channel coding; correlated mobile fading channels; correlated video data; decoding mismatch; diversity; diversity reception; finite-state Markov model; pre/postprocessing techniques; recursive algorithm; residual errors; robust decoding; robust video transmission; simulation results; spatial-temporal concealment; transmission efficiency; transmission system design; video coder; Bandwidth; Channel coding; Code standards; Decoding; Diversity reception; Fading; Predictive coding; Recursive estimation; Robustness; Video sequences;
Journal_Title :
Circuits and Systems for Video Technology, IEEE Transactions on