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Combination synchronization of three different order nonlinear systems using active backstepping design
by
Fu, Xinchu
, Wu, Zhaoyan
in
Active control
/ Automotive Engineering
/ Classical Mechanics
/ Control
/ Control stability
/ Controllers
/ Design engineering
/ Dynamical Systems
/ Engineering
/ Lorenz system
/ Mechanical Engineering
/ Model reduction
/ Nonlinear dynamics
/ Nonlinear systems
/ Original Paper
/ Synchronism
/ Synchronization
/ Vibration
2013
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Combination synchronization of three different order nonlinear systems using active backstepping design
by
Fu, Xinchu
, Wu, Zhaoyan
in
Active control
/ Automotive Engineering
/ Classical Mechanics
/ Control
/ Control stability
/ Controllers
/ Design engineering
/ Dynamical Systems
/ Engineering
/ Lorenz system
/ Mechanical Engineering
/ Model reduction
/ Nonlinear dynamics
/ Nonlinear systems
/ Original Paper
/ Synchronism
/ Synchronization
/ Vibration
2013
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Do you wish to request the book?
Combination synchronization of three different order nonlinear systems using active backstepping design
by
Fu, Xinchu
, Wu, Zhaoyan
in
Active control
/ Automotive Engineering
/ Classical Mechanics
/ Control
/ Control stability
/ Controllers
/ Design engineering
/ Dynamical Systems
/ Engineering
/ Lorenz system
/ Mechanical Engineering
/ Model reduction
/ Nonlinear dynamics
/ Nonlinear systems
/ Original Paper
/ Synchronism
/ Synchronization
/ Vibration
2013
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Combination synchronization of three different order nonlinear systems using active backstepping design
Journal Article
Combination synchronization of three different order nonlinear systems using active backstepping design
2013
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Overview
In this paper, two kinds of combination synchronization between two drive systems and one response system are investigated using active backstepping design. Firstly, increased-order combination synchronization between Lorenz system, Rössler system and hyperchaotic Lü system is considered. Secondly, reduced-order combination synchronization between hyperchaotic Lorenz system, hyperchaotic Chen system and Lü system is considered. According to Lyapunov stability theory and active backstepping design method, the corresponding controllers are both designed. Finally, several numerical examples are provided to illustrate the obtained results.
Publisher
Springer Netherlands,Springer Nature B.V
Subject
/ Control
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