Title :
Turbo codes for image transmission-a joint channel and source decoding approach
Author :
Peng, Zhishi ; Huang, Yih-Fang ; Costello, Daniel J., Jr.
Author_Institution :
Notre Dame Univ., IN, USA
fDate :
6/1/2000 12:00:00 AM
Abstract :
This paper studies an application of turbo codes to compressed image/video transmission and presents an approach to improving error control performance through joint channel and source decoding (JCSD). The proposed approach to JCSD includes error-free source information feedback, error-detected source information feedback, and the use of channel soft values (CSV) for source signal postprocessing. These feedback schemes are based on a modification of the extrinsic information passed between the constituent maximum a posteriori probability (MAP) decoders in a turbo decoder. The modification is made according to the source information obtained from the source signal processor. The CSVs are considered as reliability information on the hard decisions and are further used for error recovery in the reconstructed signals. Applications of this joint decoding technique to different visual source coding schemes, such as spatial vector quantization, JPEG coding, and MPEG coding, are examined. Experimental results show that up to 0.6 dB of channel SNR reduction can be achieved by the joint decoder without increasing computational cost for various channel coding rates.
Keywords :
combined source-channel coding; error correction codes; feedback; maximum likelihood decoding; turbo codes; vector quantisation; video coding; visual communication; JPEG coding; MAP decoders; MPEG coding; channel SNR reduction; channel coding rates; channel soft value; compressed image transmission; compressed video transmission; computational cost; error control performance; error recovery; error-detected source information feedback; error-free source information feedback; extrinsic information; hard decisions; image transmission; joint channel source decoding approach; joint decoding technique; maximum a posteriori probability decoders; reconstructed signals; reliability information; source information; source signal postprocessing; source signal processor; spatial vector quantization; turbo codes; turbo decoder; visual source coding schemes; Decoding; Error correction; Feedback; Image coding; Image reconstruction; Signal processing; Source coding; Turbo codes; Vector quantization; Video compression;
Journal_Title :
Selected Areas in Communications, IEEE Journal on