Neural network based control of an absorption column in the process of bioethanol production

Author:

Eyng Eduardo1,Silva Flávio Vasconcelos da1,Palú Fernando2,Fileti Ana Maria Frattini1

Affiliation:

1. Universidade Estadual de Campinas, Brasil

2. Universidade Estadual do Oeste do Paraná, Brasil

Abstract

Gaseous ethanol may be recovered from the effluent gas mixture of the sugar cane fermentation process using a staged absorption column. In the present work, the development of a nonlinear controller, based on a neural network inverse model (ANN controller), was proposed and tested to manipulate the absorbent flow rate in order to control the residual ethanol concentration in the effluent gas phase. Simulation studies were carried out, in which a noise was applied to the ethanol concentration signals from the rigorous model. The ANN controller outperformed the dynamic matrix control (DMC) when step disturbances were imposed to the gas mixture composition. A security device, based on a conventional feedback algorithm, and a digital filter were added to the proposed strategy to improve the system robustness when unforeseen operating and environmental conditions occured. The results demonstrated that ANN controller was a robust and reliable tool to control the absorption column.

Publisher

FapUNIFESP (SciELO)

Subject

Multidisciplinary

Reference10 articles.

1. Neural Network Toolbox User's Guide for Use with MATLAB®. Version 4;Demuth H.,2002

2. Neural modeling helps the BOS process to achieve aimed end-point conditions in liquid steel;Fileti A. M. F.;Engineering Applications of Artificial Intelligence,2006

3. Non-linear multivariable control of an alcoholic fermentation process using functional link networks;Meleiro L. A. da C.;Brazilian Archives of Biology and Technology,2005

4. Long-range predictive control of an absorption packed column;Najim K.;Appl. Math. Modelling,1995

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