Abstract
In this paper, the concept of complex hybrid synchronization in complex-variable chaotic system is introduced for the first time. Based on Lyapunov stability theory, two typical complex-variable chaotic systems are considered and corresponding controllers are designed to achieve complex hybrid synchronization. Further, a universal control method in virtue of adaptive control scheme is proposed. Numerical examples are provided to show the effectiveness of the proposed method.
Received: 2012-3-26
Accepted: 2012-9-24
Published Online: 2012-12-15
Published in Print: 2012-12-14
©2012 by De Gruyter
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Artikel in diesem Heft
- Frontmatter
- Boiling Shocks and Self-Oscillations in Critical Nozzle Flow
- Method of Taylor Expansion Moment Incorporating Fractal Theories for Brownian Coagulation of Fine Particles
- Complex Hybrid Synchronization in Drive-Response Complex-Variable Chaotic Systems
- Numerical Solution of Nonlinear Kaup-Kupershmit Equation, KdV-KdV and Hirota-Satsuma Systems
- Application of Recent Powerful Analytical Approaches on the Non-Linear Vibration of Cantilever Beams
- A Motion Model of Reinforced Concrete Fragments Driven by Internal Explosion
Schlagwörter für diesen Artikel
complex hybrid synchronization;
complex-variable;
chaotic system
Artikel in diesem Heft
- Frontmatter
- Boiling Shocks and Self-Oscillations in Critical Nozzle Flow
- Method of Taylor Expansion Moment Incorporating Fractal Theories for Brownian Coagulation of Fine Particles
- Complex Hybrid Synchronization in Drive-Response Complex-Variable Chaotic Systems
- Numerical Solution of Nonlinear Kaup-Kupershmit Equation, KdV-KdV and Hirota-Satsuma Systems
- Application of Recent Powerful Analytical Approaches on the Non-Linear Vibration of Cantilever Beams
- A Motion Model of Reinforced Concrete Fragments Driven by Internal Explosion