DocumentCode
2769991
Title
Error exponents for channel coding with side information
Author
Moulin, Pierre ; Wang, Ying
Author_Institution
Dept. of Electr. & Comput. Eng., Illinois Univ., Urbana, IL, USA
fYear
2004
fDate
24-29 Oct. 2004
Firstpage
353
Lastpage
358
Abstract
Capacity formulas and random-coding and sphere-packing exponents are derived for a generalized family of Gel´fand-Pinsker coding problems. Information is to be reliably transmitted through a noisy channel with random state sequence. Partial information about the state sequence is available to the encoder and decoder. Two families of channels are considered: (1) compound discrete memoryless channels (C-DMC); and (2) channels with arbitrary memory, subject to an additive cost constraint, or more generally to a constraint on the conditional type of the channel output given the input. Both problems are closely connected. For the C-DMC case, our random-coding and sphere-packing exponents coincide at high rates, thereby determining the reliability function of the channel family. The random-coding exponent is achieved using a 3D binning scheme and a maximum penalized mutual information decoder. In the case of arbitrary channels, with memory, a larger random-coding error exponent than in the C-DMC case is obtained. Applications of this study include watermarking, data hiding, communication in presence of partially known interferers, and problems such as broadcast channels, all of which involve the fundamental idea of binning.
Keywords
channel capacity; channel coding; decoding; memoryless systems; random codes; 3D binning scheme; C-DMC; Gel´fand-Pinsker coding problems; additive cost constraint; arbitrary memory channels; broadcast channels; capacity formulas; channel coding; compound discrete memoryless channels; data hiding; decoder; encoder; error exponents; generalized family; maximum penalized mutual information decoder; noisy channel; partial information; partially known interferers; random coding; random state sequence; reliability function; side information; sphere-packing exponents; watermarking; Automatic voltage control; Channel coding; Computer errors; Costs; Data encapsulation; Decoding; Memoryless systems; Mutual information; Reliability engineering; Watermarking;
fLanguage
English
Publisher
ieee
Conference_Titel
Information Theory Workshop, 2004. IEEE
Print_ISBN
0-7803-8720-1
Type
conf
DOI
10.1109/ITW.2004.1405328
Filename
1405328
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