Robust stabilization of fractional-order chaotic systems with linear controllers: LMI-based sufficient conditions

Author:

Faieghi Mohammad Reza1,Kuntanapreeda Suwat2,Delavari Hadi3,Baleanu Dumitru456

Affiliation:

1. Department of Electrical Engineering, Miyaneh Branch, Islamic Azad University, Iran

2. Department of Mechanical and Aerospace Engineering, Faculty of Engineering, King Mongkut’s University of Technology, North Bangkok, Thailand

3. Department of Electrical Engineering, Hamedan University of Technology, Iran

4. Department of Mathematics and Computer Sciences, Faculty of Art and Sciences, Cankaya University, Turkey

5. Department of Chemical and Materials Engineering, Faculty of Engineering King Abdulaziz University, Saudi Arabia

6. Institute of Space Sciences, Magurele-Bucharest, Romania

Abstract

This paper is concerned with the problem of robust state feedback controller design to suppress fractional-order chaotic systems. A general class of fractional-order chaotic systems is considered and it is assumed that the systems’ equations depend on bounded uncertain parameters. We transform the chaotic system equations into linear interval systems, and a sufficient stabilizability condition is derived in terms of linear matrix inequality (LMI). Then, an appropriate feedback gain is introduced to bring the chaotic states to the origin. Such design will result in a simple but effective controller. Several numerical simulations have been carried out to verify the effectiveness of the theoretic results.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Mechanics of Materials,Aerospace Engineering,Automotive Engineering,General Materials Science

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