Adaptive Blind Signal and Image Processing: Learning Algorithms and Applications / Edition 1

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Overview

With solid theoretical foundations and numerous potential applications, Blind Signal Processing (BSP) is one of the hottest emerging areas in Signal Processing. This volume unifies and extends the theories of adaptive blind signal and image processing and provides practical and efficient algorithms for blind source separation,
Independent, Principal, Minor Component Analysis, and Multichannel Blind Deconvolution (MBD) and Equalization. Containing over 1400 references and mathematical expressions Adaptive Blind Signal and Image Processing delivers an unprecedented collection of useful techniques for adaptive blind signal/image separation, extraction, decomposition and filtering of multi-variable signals and data.
* Offers a broad coverage of blind signal processing techniques and algorithms both from a theoretical and practical point of view
* Presents more than 50 simple algorithms that can be easily modified to suit the reader's specific real world problems
* Provides a guide to fundamental mathematics of multi-input, multi-output and multi-sensory systems
* Includes illustrative worked examples, computer simulations, tables, detailed graphs and conceptual models within self contained chapters to assist self study
* Accompanying CD-ROM features an electronic, interactive version of the book with fully coloured figures and text. C and MATLAB(r) user-friendly software packages are also provided
MATLAB(r) is a registered trademark of The MathWorks, Inc.
By providing a detailed introduction to BSP, as well as presenting new results and recent developments, this informative and inspiring work will appeal to researchers, postgraduate students, engineers and scientists working in biomedical engineering,
communications, electronics, computer science, optimisations, finance, geophysics and neural networks.

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Editorial Reviews

From The Critics
As a hot R&D topic in fields ranging from biomedical engineering to computer science and remote sensing, blind signal processing (BSP) includes the major areas of blind signal separation and extraction, independent signal analysis, and blind multichannel deconvolution and equalization. Cichocki (Riken Brain Science Institute, Japan; Warsaw U. of Technology, Poland) and Amari (with the former) provide selective coverage of the theory and practice devoted to these areas from work over the past decade. In self-contained chapters, they present an overview of problem formulations, and robust extensions of adaptive algorithms and models for interpreting digital images. The book includes 1,392 references, a mathematical appendix, and a glossary of symbols and abbreviations. The CD-ROM is an electronic version of the text with hyperlinks. Annotation c. Book News, Inc., Portland, OR (booknews.com)
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Product Details

  • ISBN-13: 9780471607915
  • Publisher: Wiley
  • Publication date: 6/28/2002
  • Edition description: New Edition
  • Edition number: 1
  • Pages: 586
  • Product dimensions: 6.89 (w) x 9.72 (h) x 1.56 (d)

Table of Contents

Preface.

1. Introduction to Blind Signal Processing: Problems and Applications.

Problem formulations -
An Overview.

Potential Applications of Blind and Semi-Blind Signal Processing.

2. Solving a System of Algebraic Equations and Related Problems.

Formulation of the Problem for Systems of Linear Equations.

Least-Squares Problems.

Least Absolute Deviation (1-norm) Solution of Systems of Linear Equations.

Total Least-Squares and Data Least-Squares Problems.

Sparse Signal Representation and Minimum Fuel Consumption Problem.

3. Principal/Minor Component Analysis and Related Problems.

Introduction.

Basic Properties of PCA.

Extraction of Principal Components.

Basic Cost Functions and Adaptive Algorithms for PCA.

Robust PCA.

Adaptive Learning Algorithms for MCA.

Unified Parallel Algorithms for PCA/MCA and PSA/MSA.

SVD in Relation to PCA and Matrix Subspaces.

Multistage PCA for BSS.

4. Blind Decorrelation and SOS for Robust Blind Indentification.

Spatial Decorrelation -
Whitening Transforms.

SOS Blind Identification Based on EVD.

Improved Blind Identification Algorithms Based on EVD/SVD.

Joint Diagonalization -
Robust SOBI.

Cancellation of Correlation.

5. Sequential Blind Signal Extraction.

Introduction and Problem Formulation.

Learning Algorithms Based on Kurtosis as Cost Function.

On Line Algorithms for Blind Signal Extraction of Temporally Correlated Sources.

Batch Algorithms for Blind Extraction of Temporally Correlated Sources.

Statistical Approach to Sequential Extraction of Independent Sources.

Statistical Approach to Temporally Correlated Sources.

On-line Sequential Extraction of Convolved and Mixed Sources.

Computer Simulation: Illustrative Examples.

6. Natural Gradient Approach to Independent Component Analysis.

Basic Natural Gradient Algorithms.

Generalizations of Basic Natural Gradient Algorithm.

NG Algorithms for Blind Extraction.

Generalized Gaussian Distribution Model.

Natural Gradient Algorithms for Non-stationary Sources.

7. Locally Adaptive Algorithsm for ICA and their Implementations.

Modified Jutten-Hérault Algorithms for Blind Separation of Sources.

Iterative Matrix Inversion Approach to Derivation of Family of Robust ICA Algorithms.

Computer Simulation.

8. Robust Techniques for BSS and ICA with Noisy Data.

Introduction.

Bias Removal Techniques for Prewhitening and ICA Algorithms.

Blind Separation of Signals Buried in Additive Convolutive Reference Noise.

Cumulants Based Adaptive ICA Algorithms.

Robust Extraction of Arbitrary Group of Source Signals.

Recurrent Neural Network Approach for Noise Cancellation.

9. Multichannel Blind Deconvolution -
Natural Gradient Approach.

SIMO Convolutive Models and Learning Algorithms for Estimation of Source Signal.

Multichannel Blind Deconvolution with Constraints Imposed on FIR Filters.

General Models for Multiple-Input Multiple-Output Blind Deconvolution.

Relationships between BSS/ICA and MBD.

Natural Gradient Algorithms with Nonholonomic Constraints.

MBD of Non-minimum Phase System Using Filter Decomposition Approach.

Computer Simulations Experiments.

10. Estimating Functions and Superefficiency for ICA and Deconvolution.

Estimating Functions for Standard ICA.

Estimating Functions in Noisy Case.

Estimating Functions for Temporally Correlated Source Signals.

Semiparametric Models for Multichannel Blind Deconvolution.

Estimating Functions for MBD.

11. Blind Filtering and Separation Using State-Space Approach.

Problem Formulation and Basic Models.

Derivation of Basic Learning Algorithms.

Estimation of Matrices [A,B] by Information Back-propagation.

State Estimator -
The Kalman Filter.

Two-stage Separation Algorithm.

12. Nonlinear State Space Models -
Semi-Blind Signal Processing.

General Formulation of the Problem.

Supervised -
Unsupervised Learning Approach.

References.

Appendix A. Mathematical Preliminaries.

Appendix B. Glossary of Symbols and Abbreviations.

Index.

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Sort by: Showing all of 2 Customer Reviews
  • Anonymous

    Posted August 25, 2003

    Useful book

    Never before has such a large array of methods and algorithms for blind source separation and independent component analysis (ICA) been put together with such a coherent analysis. The attached CD-ROM contains of MATLAB software and beautiful interactive version of electronic book in pdf format with illustrative fully colored figures and graphs. This book is practical and reference guide to wide spectrum of blind signal processing problems including Independent Component Analysis (ICA), blind source separation (BSS), blind recovery, blind signal extraction (BSE) and multi-channel blind deconvolution with channel blind equalization (MBD/E). The new corrected and fully revised edition (June 2003) consists of several revised features and developments. In my opinion, the most important features of the book include: * Independent component analysis using various criteria, models and higher order statistics techniques * Multistage robust blind separation of colored sources using second order statistics * Robust blind decorrelation, whitening and orthogonalization * Adaptive and information theoretic approaches to multi-channel blind deconvolution with channel blind equalization * Natural gradient, Stiefel manifolds and Lie group approaches * Extended total and data least squares problems (ETLS/DLS) * Sparse representation of signals, constrained matrix factorization and minimum p-norm problems * MATLAB packages illustrating performance of a large number of ICA/BSS algorithms both for signals and colored images.

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  • Anonymous

    Posted August 4, 2002

    Some basic features of the book

    Blind Signal and Image Processing (BSIP) is an exciting and emerging research topic in fields such biomedical signal/image processing, advanced statistics, unsupervised adaptive filtering and neural networks with solid theoretical foundations and many real world applications. This book is a practical and reference guide to wide spectrum of blind signal processing problems including Independent Component Analysis (ICA), blind source separation (BSS), blind recovery, blind signal extraction (BSE) and multi-channel blind deconvolution with channel blind equalization (MBD/E). Topics include: * Independent component analysis using various criteria, models and higher order statistics techniques, * Multistage robust blind separation of colored sources using second order statistics, * Robust blind decorrelation, whitening and orthogonalization, * Adaptive and information theoretic approaches to multi-channel blind deconvolution with channel blind equalization, * Natural gradient, Stiefel manifolds and Lie group information theoretic approaches * Generalized total and data least squares problems (TLS/DLS), * Sparse representation of signals, constrained matrix factorization and minimum p-norm problems, * MATLAB package illustrating performance of some selected ICA/BSS algorithms, * Color electronic interactive version of the book on CD-ROM in pdf format. By providing a detailed introduction to BSP, as well as presenting new results and recent developments, this monograph will appeal to students, researchers, engineers and scientists working in biomedical engineering, communications, electronics, computer science, optimisations, finance, geophysics and neural networks. The book is a step toward making the subject not only a common field of research but also a reference for those looking for new challenging topics.

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