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A Note on Stability of Sliding Mode Dynamics in Suppression of Fractional-Order Chaotic Systems

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Date

2013

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Volume Title

Publisher

Pergamon-elsevier Science Ltd

Open Access Color

HYBRID

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No

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Abstract

We consider a class of fractional-order chaotic systems which undergoes unknown perturbations. We revisit the problem of sliding mode controller design for robust stabilization of chaotic systems using one control input. In the recent works, it was assumed that one of the system equations are perturbed by uncertainties. For this case we show that the sliding mode dynamics are globally stable which is not addressed so far. Next, we allow that all the system's equations depend on uncertain terms and provide a theoretical justification for applicability of the existing design. We also determine the least amount of precise information about the chaotic system that is needed to design the controller. (C) 2012 Elsevier Ltd. All rights reserved.

Description

Keywords

Chaos Control, Fractional-Order Systems, Sliding Mode Control, Adaptive Law, Lyapunov Stability Theorem, Adaptive or robust stabilization, fractional-order systems, Computational methods for ergodic theory (approximation of invariant measures, computation of Lyapunov exponents, entropy, etc.), sliding mode control, Fractional ordinary differential equations, chaos control, Lyapunov stability theorem, Strange attractors, chaotic dynamics of systems with hyperbolic behavior, adaptive law

Fields of Science

0103 physical sciences, 0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology, 01 natural sciences

Citation

Baleanu, Dumitru; Faieghi, Mohammad Reza; Delavari, Hadi, "A Note On Stability Of Sliding Mode Dynamics in Suppression Of Fractional-Order Chaotic Systems", Computers & Mathematics With Applications, 66, No. 5, pp. 832-837, (2013).

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Q1

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Q1
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OpenCitations Citation Count
28

Source

Computers & Mathematics with Applications

Volume

66

Issue

5

Start Page

832

End Page

837
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CrossRef : 17

Scopus : 27

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Mendeley Readers : 12

SCOPUS™ Citations

31

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Web of Science™ Citations

24

checked on Feb 24, 2026

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