DocumentCode
922345
Title
Entropy inequalities for discrete channels
Author
Witsenhausen, Hans S.
Volume
20
Issue
5
fYear
1974
fDate
9/1/1974 12:00:00 AM
Firstpage
610
Lastpage
616
Abstract
The sharp lower bound
on the per-symbol output entropy for a given per-symbol input entropy
is determined for stationary discrete memoryless channels; it is the lower convex envelope of the bound
for a single channel use. The bounds agree for all noiseless channels and all binary channels. However, for nonbinary channels,
is not generally convex so that the bounds differ. Such is the case for the Hamming channels that generalize the binary symmetric channels. The bounds are of interest in connection with multiple-user communication, as exemplified by Wyner\´s applications of "Mrs. Gerber\´s lemma" (the bound for binary symmetric channels first obtained by Wyner and Ziv). These applications extend from the binary symmetric case to the. Hamming case. Doubly stochastic channels are characterized by the property of never decreasing entropy.
on the per-symbol output entropy for a given per-symbol input entropy
is determined for stationary discrete memoryless channels; it is the lower convex envelope of the bound
for a single channel use. The bounds agree for all noiseless channels and all binary channels. However, for nonbinary channels,
is not generally convex so that the bounds differ. Such is the case for the Hamming channels that generalize the binary symmetric channels. The bounds are of interest in connection with multiple-user communication, as exemplified by Wyner\´s applications of "Mrs. Gerber\´s lemma" (the bound for binary symmetric channels first obtained by Wyner and Ziv). These applications extend from the binary symmetric case to the. Hamming case. Doubly stochastic channels are characterized by the property of never decreasing entropy.Keywords
Entropy functions; Memoryless channels; Broadcasting; Degradation; Entropy; Memoryless systems; Source coding; Stochastic processes; Stochastic resonance; Symmetric matrices; Tellurium;
fLanguage
English
Journal_Title
Information Theory, IEEE Transactions on
Publisher
ieee
ISSN
0018-9448
Type
jour
DOI
10.1109/TIT.1974.1055285
Filename
1055285
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