Control and synchronization of chaos in high dimensional systems: Review of some recent results
Mingzhou Ding, E. J. Ding, William L. Ditto, Bruce J. Gluckman, Visarath In, Jianhua Peng, Mark L. Spano, Weiming Yang
Abstract
Mingzhou Ding, E. J. Ding, William L. Ditto, Bruce J. Gluckman, Visarath In, Jianhua Peng, Mark L. Spano, Weiming Yang
Abstract
Controlling chaos and synchronization of chaos have evolved for a number of years as essentially two separate areas of research. Only recently it has been realized that both subjects share a common root in control theory. In addition, as limitations of low dimensional chaotic systems in modeling real world phenomena become increasingly apparent, investigations into the control and synchronization of high dimensional chaotic systems are beginning to attract more interest. We review some recent advances in control and synchronization of chaos in high dimensional systems. Efforts will be made to stress the common origins of the two subjects. (c) 1997 American Institute of Physics.
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Controlling chaos and synchronization of chaos have evolved for a number of years as essentially two separate areas of research. Only recently it has been realized that both subjects share a common root in control theory. In addition, as limitations of low dimensional chaotic systems in modeling real world phenomena become increasingly apparent, investigations into the control and synchronization of high dimensional chaotic systems are beginning to attract more interest. We review some recent advances in control and synchronization of chaos in high dimensional systems. Efforts will be made to stress the common origins of the two subjects. (c) 1997 American Institute of Physics.
Key concepts: Synchronization of chaos, CHAOS (operating system), Synchronization (alternating current), Control of chaos, Chaotic systems, Computer science, Chaotic, Control (management)