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Enzymatic Synthesis of Ampicillin: Nonlinear Modeling, Kinetics Estimation, and Adaptive Control

Authors :
Dan Selisteanu
Monica Roman
Source :
Journal of Biomedicine and Biotechnology, Vol 2012 (2012), Journal of Biomedicine and Biotechnology
Publication Year :
2012
Publisher :
Hindawi Limited, 2012.

Abstract

Nowadays, the use of advanced control strategies in biotechnology is quite low. A main reason is the lack of quality of the data, and the fact that more sophisticated control strategies must be based on a model of the dynamics of bioprocesses. The nonlinearity of the bioprocesses and the absence of cheap and reliable instrumentation require an enhanced modeling effort and identification strategies for the kinetics. The present work approaches modeling and control strategies for the enzymatic synthesis of ampicillin that is carried out inside a fed-batch bioreactor. First, a nonlinear dynamical model of this bioprocess is obtained by using a novel modeling procedure for biotechnology: the bond graph methodology. Second, a high gain observer is designed for the estimation of the imprecisely known kinetics of the synthesis process. Third, by combining an exact linearizing control law with the on-line estimation kinetics algorithm, a nonlinear adaptive control law is designed. The case study discussed shows that a nonlinear feedback control strategy applied to the ampicillin synthesis bioprocess can cope with disturbances, noisy measurements, and parametric uncertainties. Numerical simulations performed with MATLAB environment are included in order to test the behavior and the performances of the proposed estimation and control strategies.

Details

Language :
English
ISSN :
11107251 and 11107243
Volume :
2012
Database :
OpenAIRE
Journal :
Journal of Biomedicine and Biotechnology
Accession number :
edsair.doi.dedup.....82679064082ec8a9a7a58632ae3a7804