DESIGN OF A ROBUST SLIDING MODE CONTROLLER FOR BIOREACTOR CULTURES IN OVERFLOW METABOLISM VIA AN INTERDISCIPLINARY APPROACH

Design of a Robust sliding mode controller for bioreactor cultures in overflow metabolism via an interdisciplinary approach

Design of a Robust sliding mode controller for bioreactor cultures in overflow metabolism via an interdisciplinary approach

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Microorganism culture is highly complex due to the different metabolic pathways, which are very complex.A metabolic phenomenon called overflow is a challenge to overcome in automatic control tasks of microorganism cultures.In this study, a nonlinear algorithm by sliding modes (sliding mode nonlinear control, SMNC) Statues is proposed for the robust regulation of a fed-batch bioreactor in the Vanity Tray Holder presence of parametric and system perturbations.

A control design is obtained using Lyapunov functions by techniques to propose a control law such that it is robust, only the output signals (biomass and volume) are used, and the reaction rates do not have to be wholly known.Therefore, a novel and simple controller capable of solving the above problems is obtained.

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