pH control under model uncertainties

Author:

Serrano-Magaña Héctor1ORCID,Chávez-Rodríguez Arturo Moisés1,Andrade-González Isaac1,Cruz-Vázquez Carlos2,González-Potes Apolinar3,Escalante-Minakata Pilar3,Ornelas-Paz José de Jesús4,Ibarra-Junquera Vrani3

Affiliation:

1. Tecnológico Nacional de México, Campus Tlajomulco , Tlajomulco de Zúñiga , Jalisco C.P. 45640 , Mexico

2. Tecnologico Nacional de México, Campus El Llano , Aguascalientes , C.P. 20330 , Mexico

3. Facultad de Ciencias Químicas , Universidad de Colima , Colima C.P. 28629 , Mexico

4. Centro de Investigación en Alimentación y Desarrollo A.C. (CIAD). Unidad Cuauhtémoc , C.P. 31570 , Cuauhtémoc , Mexico

Abstract

Abstract This work presents a pH control approach, robust to model uncertainties including the scaling-up process. The algorithm is based on a master-slave synchronization, where the real process is taken as the slave, and the master is generated by the real-time simulation of the closed-loop mathematical model of the process. In that sense, the objective is to control the pH value, under minimal process information and subject to perturbations and time-varying references ranging between the basic and acid regions, at laboratory and industrial scales.

Publisher

Walter de Gruyter GmbH

Subject

General Chemical Engineering

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