Adaptive barrier function‐based fractional‐order chattering‐free finite‐time control for uncertain chaotic systems

Author:

Askari Sepestanaki Mohammadreza1ORCID,Soofi Mohammad1,Barhaghtalab Mojtaba Hadi1,Bahmani Hamidreza2,Mobayen Saleh3ORCID,Jalilvand Abolfazl1

Affiliation:

1. Department of Electrical Engineering University of Zanjan Zanjan Iran

2. Department of Electrical Engineering Technical and Vocational University (TVU) Tehran Iran

3. Graduate School of Intelligent Data Science National Yunlin University of Science and Technology Douliou Taiwan

Abstract

This study proposes the adaptive continuous barrier function as the fractional‐order control system using the terminal sliding mode control technique with chattering‐free property to stabilize chaotic systems that have unknown uncertainties. The important reason for using the fractional‐order controller is its greater flexibility than the integer‐order controller. Using adaptive approach and Lyapunov's stability theory, an adaptive continuous barrier fractional‐order chattering‐free finite‐time controller for a category of chaotic systems with the unknown uncertainties and external disturbances is presented. The suggested controller can stabilize the chaotic system excellently with a continuous and smooth control law even without knowing the boundaries and in the presence of unknown disturbances due to the model uncertainties. According to MATLAB simulation results, the high efficiency of the suggested control technique to control the chaotic systems in the attendance of unknown perturbations is obviously confirmed.

Publisher

Wiley

Subject

General Engineering,General Mathematics

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