The present work addresses the problem of chaos control in an electrostatic MEMS resonator by using an output-feedback control scheme. One of the unstable orbits immersed in the chaotic attractor is stabilized in order to produce a sustained oscillation of the movable plate composing the microstructure. The orbit is carefully chosen so as to produce a high amplitude oscillation. This approach allows the enhancement of oscillation amplitude of the resonator at a reduced control effort, since the unstable orbit already exists in the system and it is not necessary to spend energy to create it. Realistic operational conditions of the MEMS are considered including parametric uncertainties in the model and constraints due to the difficulty in mea...
This paper analyzes the non-linear dynamics. with a chaotic behavior of a particular microelectro-me...
The performance of a chaotic micro resonator is improved by redesigning a quadratic controller repor...
AbstractThis study analyzes the chaotic behavior of a micromechanical resonator with electrostatic f...
ABSTRACT: The present work addresses the problem of chaos control in an electrostatic MEMS resonator...
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...
AbstractA delayed position feedback control is applied on DC voltage source for suppressing chaos of...
The dynamic analysis and control of a nonlinear MEM resonator system are considered. Phase diagram, ...
In this work the chaotic behavior of a micro-mechanical resonator with electrostatic forces on both ...
The dynamical analysis and control of a nonlinear MEMS resonator system is considered. Phase diagram...
Abstract—A model for a chaotic micro-oscillator is developed by adding a new control system to an el...
The electromechanical transducer considered in this work is composed of a mechanical oscillator link...
Abstract The dynamics of a close-loop electrostatic MEMS resonator, proposed as a platform for ultra...
International audienceChaotic systems, presenting complex and nonreproducible dynamics, may be found...
In this paper, a phase feedback approach for usingnonlinear microelectromechanical (MEM) resonators ...
This paper analyzes the non-linear dynamics. with a chaotic behavior of a particular microelectro-me...
The performance of a chaotic micro resonator is improved by redesigning a quadratic controller repor...
AbstractThis study analyzes the chaotic behavior of a micromechanical resonator with electrostatic f...
ABSTRACT: The present work addresses the problem of chaos control in an electrostatic MEMS resonator...
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...
AbstractA delayed position feedback control is applied on DC voltage source for suppressing chaos of...
The dynamic analysis and control of a nonlinear MEM resonator system are considered. Phase diagram, ...
In this work the chaotic behavior of a micro-mechanical resonator with electrostatic forces on both ...
The dynamical analysis and control of a nonlinear MEMS resonator system is considered. Phase diagram...
Abstract—A model for a chaotic micro-oscillator is developed by adding a new control system to an el...
The electromechanical transducer considered in this work is composed of a mechanical oscillator link...
Abstract The dynamics of a close-loop electrostatic MEMS resonator, proposed as a platform for ultra...
International audienceChaotic systems, presenting complex and nonreproducible dynamics, may be found...
In this paper, a phase feedback approach for usingnonlinear microelectromechanical (MEM) resonators ...
This paper analyzes the non-linear dynamics. with a chaotic behavior of a particular microelectro-me...
The performance of a chaotic micro resonator is improved by redesigning a quadratic controller repor...
AbstractThis study analyzes the chaotic behavior of a micromechanical resonator with electrostatic f...