Argentina
| info:eu-repo/semantics/article
State Estimation and Nonlinear Tracking Control Simulation Approach: Application to a Bioethanol Production System
Fecha
2021-08Registro en:
Fernández Puchol, María Cecilia; Pantano, Maria Nadia; Rodriguez Aguilar, Leandro Pedro Faustino; Scaglia, Gustavo Juan Eduardo; State Estimation and Nonlinear Tracking Control Simulation Approach: Application to a Bioethanol Production System; Springer; Bioprocess And Biosystems Engineering; 44; 8-2021; 1755-1768
1615-7591
1615-7605
CONICET Digital
CONICET
Autor
Fernández Puchol, María Cecilia
Pantano, Maria Nadia
Rodriguez Aguilar, Leandro Pedro Faustino
Scaglia, Gustavo Juan Eduardo
Resumen
Tracking control of specifc variables is key to achieve a proper fermentation. This paper analyzes a fed-batch bioethanol production process. For this system, a controller design based on linear algebra is proposed. Moreover, to achieve a reliable control, on-line monitoring of certain variables is needed. In this sense, for unmeasurable variables, state estimators based on Gaussian processes are designed. Cell, ethanol and glycerol concentrations are predicted with only substrates measurement. Simulation results when the controller and estimators are coupled, are shown. Furthermore, the algorithms were tested with parametric uncertainties and disturbances in the control action, and are compared, in all cases, with neural networks estimators (previous work). Bayesian estimators show a performance improvement, which is refected in a decrease of the total error. Proposed techniques give reliable monitoring and control tools, with a low computational and economic cost, and less mathematical complexity than neural network estimators.