State estimation and trajectory tracking control for a nonlinear and multivariable bioethanol production system
Abstract:
In this paper a controller is proposed based on linear algebra for a fed-batch bioethanol production process. It involves fnding feed rate profles (control actions obtained as a solution of a linear equations system) in order to make the system follow predefned concentration profles. A neural network states estimation is designed in order to know those variables that cannot be measured. The controller is tuned using a Monte Carlo experiment for which a cost function that penalizes tracking errors is defned. Moreover, several tests (adding parametric uncertainty and perturbations in the control action) are carried out so as to evaluate the controller performance. A comparison with another controller is made. The demonstration of the error convergence, as well as the stability analysis of the neural network, are included.
Año de publicación:
2019
Keywords:
- State Estimation
- Profles tracking control
- Fed-batch bioprocess
- Nonlinear and multivariable system
- Numerical methods/linear algebra
Fuente:
Tipo de documento:
Article
Estado:
Acceso abierto
Áreas de conocimiento:
- Sistema de control
- Biotecnología
Áreas temáticas:
- Tecnología de productos químicos industriales
- Ingeniería química
- Ingeniería y operaciones afines