In this work, we deal with a micro electromechanical system (MEMS), represented by a micro-accelerometer. Through numerical simulations, it was found that for certain parameters, the system has a chaotic behavior. The chaotic behaviors in a fractional order are also studied numerically, by historical time and phase portraits, and the results are validated by the existence of positive maximal Lyapunov exponent. Three control strategies are used for controlling the trajectory of the system: State Dependent Riccati Equation (SDRE) Control, Optimal Linear Feedback Control, and Fuzzy Sliding Mode Control. The controls proved effective in controlling the trajectory of the system studied and robust in the presence of parametric errors
In 1695, G. Leibniz laid the foundations of fractional calculus, but mathematicians revived it only ...
The dynamic analysis and control of a nonlinear MEM resonator system are considered. Phase diagram, ...
This paper introduces a novel method to control linear parameter varying (LPV) systems by employing ...
The dynamical analysis and control of a nonlinear MEMS resonator system is considered. Phase diagram...
This paper presents the linear optimal control technique for reducing the chaotic movement of the mi...
AbstractThis study analyzes the chaotic behavior of a micromechanical resonator with electrostatic f...
This paper deals with chaos control in an arch microelectromechanical system (MEMS) from the fractio...
This paper focuses on chaos suppression strategy of a microresonator actuated by two symmetrical ele...
This paper analyzes the non-linear dynamics. with a chaotic behavior of a particular microelectro-me...
In this paper, we investigate the chaotic behaviors of the fractional-order permanent magnet synchr...
During the last decade the chaotic behavior in MEMS resonators have been reported in a number of wor...
During the last decade the chaotic behavior in MEMS resonators have been reported in a number of wor...
The book reports on the latest advances in and applications of fractional order control and synchron...
A novel nonlinear fractional order sliding mode controller is proposed to control the chaotic atomic...
Most of the Real systems shows chaotic behavior when they approach complex states. Especially in phy...
In 1695, G. Leibniz laid the foundations of fractional calculus, but mathematicians revived it only ...
The dynamic analysis and control of a nonlinear MEM resonator system are considered. Phase diagram, ...
This paper introduces a novel method to control linear parameter varying (LPV) systems by employing ...
The dynamical analysis and control of a nonlinear MEMS resonator system is considered. Phase diagram...
This paper presents the linear optimal control technique for reducing the chaotic movement of the mi...
AbstractThis study analyzes the chaotic behavior of a micromechanical resonator with electrostatic f...
This paper deals with chaos control in an arch microelectromechanical system (MEMS) from the fractio...
This paper focuses on chaos suppression strategy of a microresonator actuated by two symmetrical ele...
This paper analyzes the non-linear dynamics. with a chaotic behavior of a particular microelectro-me...
In this paper, we investigate the chaotic behaviors of the fractional-order permanent magnet synchr...
During the last decade the chaotic behavior in MEMS resonators have been reported in a number of wor...
During the last decade the chaotic behavior in MEMS resonators have been reported in a number of wor...
The book reports on the latest advances in and applications of fractional order control and synchron...
A novel nonlinear fractional order sliding mode controller is proposed to control the chaotic atomic...
Most of the Real systems shows chaotic behavior when they approach complex states. Especially in phy...
In 1695, G. Leibniz laid the foundations of fractional calculus, but mathematicians revived it only ...
The dynamic analysis and control of a nonlinear MEM resonator system are considered. Phase diagram, ...
This paper introduces a novel method to control linear parameter varying (LPV) systems by employing ...