Fractional Sliding Mode Nonlinear Procedure for Robust Control of an Eutrophying Microalgae Photobioreactor

This paper proposes a fractional-order sliding mode controller (FOSMC) for the robust control of a nonlinear process subjected to unknown parametric disturbances. The controller aims to ensure optimal growth in photobioreactors of native microalgae involved in eutrophication of the Sinaloa rivers in...

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Veröffentlicht in:Algorithms 2020-03, Vol.13 (3), p.50
Hauptverfasser: Rodríguez-Mata, Abraham Efraim, Luna, Ricardo, Pérez-Correa, Jose Ricardo, Gonzalez-Huitrón, Alejandro, Castro-Linares, Rafael, Duarte-Mermoud, Manuel A.
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Sprache:eng
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Zusammenfassung:This paper proposes a fractional-order sliding mode controller (FOSMC) for the robust control of a nonlinear process subjected to unknown parametric disturbances. The controller aims to ensure optimal growth in photobioreactors of native microalgae involved in eutrophication of the Sinaloa rivers in Mexico. The controller design is based on the Caputo fractional integral-order derivative and on the convergence properties of a sliding surface. For nonlinear systems, the proposed FOSMC guarantees convergence to the sliding surface even in the presence of model disturbances. The proposed controller is compared to an Internal Model Control (IMC) through numerical simulations.
ISSN:1999-4893
1999-4893
DOI:10.3390/a13030050