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Cellular Neural Networks and Visual Computing Foundations and Applications

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ISBN-10: 0521652472

ISBN-13: 9780521652476

Edition: 2001

Authors: Leon O. Chua, Tamas Roska

List price: $199.00
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Cellular Nonlinear/neural Network (CNN) technology is both a revolutionary concept and an experimentally proven new computing paradigm. Analogic cellular computers based on CNNs are set to change the way analog signals are processed and are paving the way to an entire new analog computing industry. This unique undergraduate level textbook includes many examples and exercises, including CNN simulator and development software accessible via the Internet. It is an ideal introduction to CNNs and analogic cellular computing for students, researchers and engineers from a wide range of disciplines. Although its prime focus is on visual computing, the concepts and techniques described in the book…    
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Book details

List price: $199.00
Copyright year: 2001
Publisher: Cambridge University Press
Publication date: 5/23/2002
Binding: Hardcover
Pages: 410
Size: 7.25" wide x 10.25" long x 1.00" tall
Weight: 2.2
Language: English

Once over lightly
Introduction - notations, definitions and mathematical foundation
Characteristics and analysis of simple CNN templates
Simulation of the CNN dynamics
Binary CNN characterization via Boolean functions
Uncoupled CNNs: unified theory and applications
Introduction to the CNN universal machine
Back to basics: nonlinear dynamics and complete stability
The CNN universal machine (CNN - UM)
Template design tools
CNNs for linear image processing
Coupled CNN with linear synaptic weights
Uncoupled standard CNNs with nonlinear synaptic weights
Standard CNNs with delayed synaptic weights and motion analysis
Visual microprocessors - analog and digital VLSI implementation of the CNN universal machine
CNN models in the visual pathway and the 'bionic eye'
A CNN template library
Using a simple multi-layer CNN analogic dynamic template and algorithm simulator (CANDY)
A program for binary CNN template design and optimization (TEMPO)