Fr. 134.00

An Information-Theoretic Approach to Neural Computing

English · Paperback / Softback

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Description

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Neural networks provide a powerful new technology to model and control nonlinear and complex systems. In this book, the authors present a detailed formulation of neural networks from the information-theoretic viewpoint. They show how this perspective provides new insights into the design theory of neural networks. In particular they show how these methods may be applied to the topics of supervised and unsupervised learning including feature extraction, linear and non-linear independent component analysis, and Boltzmann machines. Readers are assumed to have a basic understanding of neural networks, but all the relevant concepts from information theory are carefully introduced and explained. Consequently, readers from several different scientific disciplines, notably cognitive scientists, engineers, physicists, statisticians, and computer scientists, will find this to be a very valuable introduction to this topic.

List of contents

1 Introduction.- 2 Preliminaries of Information Theory and Neural Networks.- 2.1 Elements of Information Theory.- 2.2 Elements of the Theory of Neural Networks.- I: Unsupervised Learning.- 3 Linear Feature Extraction: Infomax Principle.- 4 Independent Component Analysis: General Formulation and Linear Case.- 5 Nonlinear Feature Extraction: Boolean Stochastic Networks.- 6 Nonlinear Feature Extraction: Deterministic Neural Networks.- II: Supervised Learning.- 7 Supervised Learning and Statistical Estimation.- 8 Statistical Physics Theory of Supervised Learning and Generalization.- 9 Composite Networks.- 10 Information Theory Based Regularizing Methods.- References.

Product details

Authors Gustav Deco, Gustavo Deco, Dragan Obradovic
Publisher Springer, Berlin
 
Languages English
Product format Paperback / Softback
Released 25.07.2012
 
EAN 9781461284697
ISBN 978-1-4612-8469-7
No. of pages 262
Dimensions 155 mm x 238 mm x 16 mm
Illustrations XIV, 262 p.
Series Perspectives in Neural Computing
Perspectives in Neural Computing
Subject Natural sciences, medicine, IT, technology > IT, data processing > IT

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