Cellular Neural Networks, Multi-Scroll Chaos and Synchronization Contributor(s): Suykens, Johan A. K. (Author), Yalcin, Mustak E. (Author), Vandewalle, Joos P. L. (Author) |
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ISBN: 9812561617 ISBN-13: 9789812561619 Publisher: World Scientific Publishing Company
Binding Type: Hardcover Published: February 2005 Annotation: For engineering applications that are based on nonlinear phenomena, novel information processing systems require new methodologies and design principles. This perspective is the basis of the three cornerstones of this book: cellular neural networks, chaos and synchronization. Cellular neural networks and their universal machine implementations offer a well-established platform for processing spatial-temporal patterns and wave computing. Multi-scroll circuits are generalizations to the original Chua's circuit, leading to chip implementable circuits with increasingly complex attractors. Several applications make use of synchronization techniques for nonlinear systems. A systematic overview is given for Lur'e representable systems with global synchronization criteria for master-slave and mutual synchronization, robust synchronization, HV synchronization, time-delayed systems and impulsive synchronization. Click for more in this series: World Scientific Nonlinear Science Series a |
Additional Information |
BISAC Categories: - Technology & Engineering | Electrical - Science | Chaotic Behavior In Systems - Computers | Neural Networks |
Dewey: 006.32 |
Series: World Scientific Nonlinear Science Series a |
Physical Information: 0.74" H x 6.56" W x 9.3" L (1.11 lbs) 248 pages |
Descriptions, Reviews, Etc. |
Publisher Description: For engineering applications that are based on nonlinear phenomena, novel information processing systems require new methodologies and design principles. This perspective is the basis of the three cornerstones of this book: cellular neural networks, chaos and synchronization. Cellular neural networks and their universal machine implementations offer a well-established platform for processing spatial-temporal patterns and wave computing. Multi-scroll circuits are generalizations to the original Chua's circuit, leading to chip implementable circuits with increasingly complex attractors. Several applications make use of synchronization techniques for nonlinear systems. A systematic overview is given for Lur'e representable systems with global synchronization criteria for master-slave and mutual synchronization, robust synchronization, H∞ synchronization, time-delayed systems and impulsive synchronization. |
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