An edition of Coding for Channels with Feedback (1998)

Coding for Channels with Feedback

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August 3, 2020 | History
An edition of Coding for Channels with Feedback (1998)

Coding for Channels with Feedback

Coding for Channels with Feedback presents both algorithms for feedback coding and performance analyses of these algorithms, including analyses of perhaps the most important performance criterion: computational complexity. The algorithms are developed within a single framework, termed the compressed-error-cancellation framework, where data are sent via a sequence of messages: the first message contains the original data; each subsequent message contains a source-coded description of the channel distortions introduced on the message preceding it. Coding for Channels with Feedback provides an easily understood and flexible framework for deriving low-complexity, practical solutions to a wide variety of feedback communication problems. It is shown that the compressed-error-cancellation framework leads to coding schemes with the lowest possible asymptotic order of growth of computations and can be applied to discrete memoryless channels, finite state channels, channels with memory, unknown channels, and multiple-access channels, all with complete noiseless feedback, as well as to channels with partial and noisy feedback. This framework leads to coding strategies that have linear complexity and are capacity achieving, and illustrates the intimate connection between source coding theory and channel coding theory. Coding for Channels with Feedback is an excellent reference for researchers and communication engineers in the field of information theory, and can be used for advanced courses on the topic.

Publish Date
Publisher
Springer US
Language
English
Pages
174

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Edition Availability
Cover of: Coding for Channels with Feedback
Coding for Channels with Feedback
1998, Springer US
electronic resource / in English

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Book Details


Edition Notes

Online full text is restricted to subscribers.

Also available in print.

Mode of access: World Wide Web.

Published in
Boston, MA
Series
The Springer International Series in Engineering and Computer Science -- 452, International series in engineering and computer science -- 452.

Classifications

Dewey Decimal Class
621.3
Library of Congress
TK1-9971, TK1-9971QA76.9.M35&n, TA1-2040

The Physical Object

Format
[electronic resource] /
Pagination
1 online resource (xxii, 174 pages).
Number of pages
174

Edition Identifiers

Open Library
OL27024842M
ISBN 10
146137619X, 1461557194
ISBN 13
9781461376194, 9781461557197
OCLC/WorldCat
851745852

Work Identifiers

Work ID
OL19835128W

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