This paper presents a new nonlinear integral-type sliding surface for synchronizing two different chaotic systems with parametric uncertainty. On the basis of Lyapunov theorem and average dwelling time method, we obtain the control gains of controllers which are derived to achieve chaos synchronization. In order to reduce the gains, the error system is modeled as a switching system. We obtain the sufficient condition drawn for the robust stability of the error dynamics by stability analysis. Then we apply it to guide the design of the controllers. Finally, numerical examples are used to show the robustness and effectiveness of the proposed control strategy
A robust sliding mode observer is proposed and applied to realize the synchronization for a class of...
A sliding mode control design for a class of uncertain chaotic systems subject to sector nonlinear i...
When the parameters of both drive and response systems are all unknown, an adaptive sliding mode con...
This paper presents a new nonlinear integral-type sliding surface for synchronizing two different ch...
This paper presents a new nonlinear integral-type sliding surface for synchronizing two different ch...
AbstractIn this paper, the problem of chaos synchronization between two different uncertain chaotic ...
In this paper, an integral sliding mode controller is proposed to realize the synchroniza-tion of a ...
The inherent property of invariance to structural and parametric uncertainties in sliding mode contr...
AbstractIn this paper, the problem of chaos synchronization between two different uncertain chaotic ...
In this study, the synchronization problem of chaotic systems using integral-type sliding mode contr...
This paper describes the design of sliding mode controller for the global chaos synchronization of i...
This paper describes the design of sliding mode controller for the global chaos synchronization of i...
This paper proposes a robust sliding mode observer for synchronization of uncertain chaotic systems ...
Abstract. This paper presents a fuzzy controller to solve a master-slave chaos synchronization probl...
This paper establishes new results for the sliding controller design for the global chaos synchroniz...
A robust sliding mode observer is proposed and applied to realize the synchronization for a class of...
A sliding mode control design for a class of uncertain chaotic systems subject to sector nonlinear i...
When the parameters of both drive and response systems are all unknown, an adaptive sliding mode con...
This paper presents a new nonlinear integral-type sliding surface for synchronizing two different ch...
This paper presents a new nonlinear integral-type sliding surface for synchronizing two different ch...
AbstractIn this paper, the problem of chaos synchronization between two different uncertain chaotic ...
In this paper, an integral sliding mode controller is proposed to realize the synchroniza-tion of a ...
The inherent property of invariance to structural and parametric uncertainties in sliding mode contr...
AbstractIn this paper, the problem of chaos synchronization between two different uncertain chaotic ...
In this study, the synchronization problem of chaotic systems using integral-type sliding mode contr...
This paper describes the design of sliding mode controller for the global chaos synchronization of i...
This paper describes the design of sliding mode controller for the global chaos synchronization of i...
This paper proposes a robust sliding mode observer for synchronization of uncertain chaotic systems ...
Abstract. This paper presents a fuzzy controller to solve a master-slave chaos synchronization probl...
This paper establishes new results for the sliding controller design for the global chaos synchroniz...
A robust sliding mode observer is proposed and applied to realize the synchronization for a class of...
A sliding mode control design for a class of uncertain chaotic systems subject to sector nonlinear i...
When the parameters of both drive and response systems are all unknown, an adaptive sliding mode con...