DocumentCode
1022510
Title
DPCM picture transmission over noisy channels with the aid of a Markov model
Author
Emami, Shahriar ; Miller, Scott L.
Author_Institution
Dept. of Electr. Eng., Florida Univ., Gainesville, FL, USA
Volume
4
Issue
11
fYear
1995
fDate
11/1/1995 12:00:00 AM
Firstpage
1473
Lastpage
1481
Abstract
The problem of DPCM picture transmission over noisy channels is considered. It is well known that DPCM systems are very sensitive to channel errors. The goal in this work is to build robustness against channel errors. Three methods are proposed in this paper and are obtained by modeling the encoded signal as a Markov sequence. First, an optimum method for decoding correlated sequences is derived, and it is shown to require Viterbi decoding. Then, a modified MAP method (MMAP) for Markov sequences is described. A maximal signal-to-noise (MSNR) receiver for DPCM systems is also developed that minimizes the distortion power due to channel errors. The appropriate cost matrix for this receiver is computed. These methods are applied to DPCM picture transmission over noisy channels and are compared with a another method. The SNR graphs, as well as subjective examination of the received pictures, demonstrate that the proposed procedures are quite effective and superior to that method. Among the proposed methods, the MSNR receiver was found to be more effective than the others for a given order of the Markov model. It is observed that the proposed methods are most beneficial for low detail pictures
Keywords
Markov processes; Viterbi decoding; correlation methods; differential pulse code modulation; facsimile; image coding; receivers; sequences; telecommunication channels; DPCM picture transmission; DPCM systems; Markov model; Markov sequence; Viterbi decoding; channel errors; correlated sequences decoding; cost matrix; distortion power; encoded signal modeling; maximal signal-to-noise receiver; modified MAP method; noisy channels; optimum method; Costs; Decoding; Distortion; Error correction; Modulation coding; Phase change materials; Pulse modulation; Redundancy; Robustness; Viterbi algorithm;
fLanguage
English
Journal_Title
Image Processing, IEEE Transactions on
Publisher
ieee
ISSN
1057-7149
Type
jour
DOI
10.1109/83.469929
Filename
469929
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