DocumentCode
1637406
Title
Chaotic Synchronization of Exponent Stability by Nonlinear FeedbackBased on the Bounded Property
Author
Mingjie, Chen ; Changhong, Wang ; Hongmei, Zhang
Author_Institution
Harbin Eng. Univ., Harbin
fYear
2007
Firstpage
221
Lastpage
225
Abstract
Exponent stability is considered as a higher level of stability than asymptotic stability. To realize chaotic synchronization with better synchronization capability, a theory of exponent stability was introduced to the research of chaotic synchronization, and an approach of chaotic synchronization with exponent stability of the synchronization error system was discussed. On the premise that the states of the aim chaotic system were observable, an approach of exponent stability by nonlinear feedback control based on the bounded property of the tracks was proposed for the chaotic synchronization, which made the chaotic synchronization errors satisfy exponent stability, and realized the chaotic synchronization in according to exponent stability. That is to say, the capability of chaotic synchronization was improved, while the chaotic systems arrived at the chaotic synchronization. Theory analysis and simulation results had proved the feasibility and validity of the approach. When applied in the fields of chaotic secure communication and others, the prospect will be perfect.
Keywords
asymptotic stability; chaos; feedback; nonlinear control systems; synchronisation; asymptotic stability; bounded property; chaotic synchronization; exponent stability; nonlinear feedback; nonlinear feedback control; synchronization error system; Analytical models; Asymptotic stability; Automatic control; Automation; Chaos; Chaotic communication; Error correction; Feedback control; Tellurium; Chaotic Synchronization; Exponent Stability; Feedback Control; Synchronization Capability;
fLanguage
English
Publisher
ieee
Conference_Titel
Control Conference, 2007. CCC 2007. Chinese
Conference_Location
Hunan
Print_ISBN
978-7-81124-055-9
Electronic_ISBN
978-7-900719-22-5
Type
conf
DOI
10.1109/CHICC.2006.4346763
Filename
4346763
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