Title of article
Design of Fractional Order Sliding Mode Controller for Chaos Suppression of Atomic Force Microscope System
Author/Authors
Haghighatnia, S Control Department - Shahrood University of Technology , Toossian Shandiz, H Electrical Department - Ferdowsi University of Mashhad
Pages
7
From page
222
To page
228
Abstract
A novel nonlinear fractional order sliding mode controller is proposed to control the chaotic atomic force microscope system in presence of uncertainties and disturbances. In the design of the suggested fractional order controller, conformable fractional order derivative is applied. The stability of the scheme is proved by means of the Lyapunov theory based on conformable fractional order derivative. The simulation results show the advantages of the designed controller such as fast convergence speed, high accuracy and robustness against uncertainties and disturbances.
Keywords
Conformable Fractional Order Derivative , Fractional Order Sliding Mode Controller , Chaotic System , Atomic Force Microscope System , Fractional Order System
Serial Year
2019
Record number
2494889
Link To Document