The performance of the optimal linear feedback control and of the state-dependent Riccati equation control techniques applied to control and to suppress the chaotic motion in the atomic force microscope are analyzed. In addition, the sensitivity of each control technique regarding to parametric uncertainties are considered. Simulation results show the advantages and disadvantages of each technique. © 2013 Brazilian Society for Automatics - SBA
The strongly nonlinear dynamics of a noncontact AFM model with external feedback control is analyzed...
In this work the chaotic behavior of a micro-mechanical resonator with electrostatic forces on both ...
We successfully demonstrated the first experimental stabilization of irregular and non-periodic cant...
Nonlinear motion of the microcantilever probe in the Atomic Force Microscope (AFM) has been extensiv...
The tapping mode is one of the mostly employed techniques in atomic force microscopy due to its accu...
In this chapter, we explore a mathematical modelling that describes the nonlinear dynamic behavior o...
The paper presents a model reference adaptive control (MRAC) of first and second order to control th...
The paper presents a model reference adaptive control (MRAC) of first and second order to control th...
During the last 30 years the Atomic Force Microscopy became the most powerful tool for surface probi...
The article presents the control of the nonlinear dynamics of the cantilever-sample system of an ato...
This work deals with three themes: the qualitative theory of ordinary differential equations and the...
The strongly nonlinear dynamics of a noncontact AFM model with external feedback control is analyzed...
The strongly nonlinear dynamics of a noncontact AFM model with external feedback control is analyzed...
The strongly nonlinear dynamics of a noncontact AFM model with external feedback control is analyzed...
The strongly nonlinear dynamics of a noncontact AFM model with external feedback control is analyzed...
The strongly nonlinear dynamics of a noncontact AFM model with external feedback control is analyzed...
In this work the chaotic behavior of a micro-mechanical resonator with electrostatic forces on both ...
We successfully demonstrated the first experimental stabilization of irregular and non-periodic cant...
Nonlinear motion of the microcantilever probe in the Atomic Force Microscope (AFM) has been extensiv...
The tapping mode is one of the mostly employed techniques in atomic force microscopy due to its accu...
In this chapter, we explore a mathematical modelling that describes the nonlinear dynamic behavior o...
The paper presents a model reference adaptive control (MRAC) of first and second order to control th...
The paper presents a model reference adaptive control (MRAC) of first and second order to control th...
During the last 30 years the Atomic Force Microscopy became the most powerful tool for surface probi...
The article presents the control of the nonlinear dynamics of the cantilever-sample system of an ato...
This work deals with three themes: the qualitative theory of ordinary differential equations and the...
The strongly nonlinear dynamics of a noncontact AFM model with external feedback control is analyzed...
The strongly nonlinear dynamics of a noncontact AFM model with external feedback control is analyzed...
The strongly nonlinear dynamics of a noncontact AFM model with external feedback control is analyzed...
The strongly nonlinear dynamics of a noncontact AFM model with external feedback control is analyzed...
The strongly nonlinear dynamics of a noncontact AFM model with external feedback control is analyzed...
In this work the chaotic behavior of a micro-mechanical resonator with electrostatic forces on both ...
We successfully demonstrated the first experimental stabilization of irregular and non-periodic cant...