Title of article :
Generalized projective synchronization of uncertain chaotic systems with external disturbance
Author/Authors :
Farivar، نويسنده , , Faezeh and Shoorehdeli، نويسنده , , Mahdi Aliyari and Nekoui، نويسنده , , Mohammad Ali and Teshnehlab، نويسنده , , Mohammad، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2011
Abstract :
This paper proposes the generalized projective synchronization (GPS) of uncertain chaotic systems with external disturbance via Gaussian radial basis adaptive sliding mode control (GRBASMC). A sliding surface is adopted to ensure the stability of the error dynamics in sliding mode control. In the neural sliding mode controller, a Gaussian radial basis function is utilized to online estimate the system dynamic function. The adaptation law of the control system is derived in the sense of Lyapunov function, thus the system can be guaranteed to be asymptotically stable.
oposed method allows us to arbitrarily adjust the desired scaling by controlling the slave system. It is not necessary to calculate the Lyapunov exponents and the eigen values of the Jacobian matrix, which makes it simple and convenient. Also, it is a systematic procedure for GPS of chaotic systems and it can be applied to a variety of chaotic systems no matter whether it contains external excitation or not. Note that it needs only one controller to realize GPS no matter how much dimensions the chaotic system contains and the controller is easy to be implemented.
oposed method is applied to three chaotic systems: Genesio system, Lur’e like system and Duffing system.
Keywords :
sliding mode control , Gaussian radial basis function neural network , Sliding Surface , Adaptive control , Chaotic System , Projective synchronization
Journal title :
Expert Systems with Applications
Journal title :
Expert Systems with Applications