DocumentCode
107738
Title
Expurgated Random-Coding Ensembles: Exponents, Refinements, and Connections
Author
Scarlett, Jonathan ; Li Peng ; Merhav, Neri ; Martinez, A. ; Guillen i Fabregas, Albert
Author_Institution
Dept. of Eng., Univ. of Cambridge, Cambridge, UK
Volume
60
Issue
8
fYear
2014
fDate
Aug. 2014
Firstpage
4449
Lastpage
4462
Abstract
This paper studies expurgated random-coding bounds and exponents for channel coding with a given (possibly suboptimal) decoding rule. Variations of Gallager´s analysis are presented, yielding several asymptotic and nonasymptotic bounds on the error probability for an arbitrary codeword distribution. A simple nonasymptotic bound is shown to attain an exponent of Csiszár and Körner under constant-composition coding. Using Lagrange duality, this exponent is expressed in several forms, one of which is shown to permit a direct derivation via cost-constrained coding that extends to infinite and continuous alphabets. The method of type class enumeration is studied, and it is shown that this approach can yield improved exponents and better tightness guarantees for some codeword distributions. A generalization of this approach is shown to provide a multiletter exponent that extends immediately to channels with memory.
Keywords
channel coding; decoding; error statistics; random codes; Gallager analysis; Lagrange duality; arbitrary codeword distribution; asymptotic bounds; channel coding; codeword distributions; connections; constant-composition coding; continuous alphabets; cost-constrained coding; decoding rule; error probability; exponents; expurgated random-coding bounds; expurgated random-coding ensembles; infinite alphabets; refinements; simple nonasymptotic bound; type class enumeration; Decoding; Electronic mail; Encoding; Error probability; IP networks; Joints; Measurement; Expurgated error exponents; maximum-likelihood decoding; mismatched decoding; random coding; reliability function; type class enumeration;
fLanguage
English
Journal_Title
Information Theory, IEEE Transactions on
Publisher
ieee
ISSN
0018-9448
Type
jour
DOI
10.1109/TIT.2014.2322033
Filename
6810903
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