DocumentCode :
2509928
Title :
Estimation of state variables and kinetic parameters in an enzyme production process by using minimal modelling
Author :
Charbonnier, S. ; Cheruy, A.
Author_Institution :
Lab. d´´Autom. de Grenoble, ENSIEG, St. Martin d´´Heres, France
fYear :
1994
fDate :
24-26 Aug 1994
Firstpage :
1923
Abstract :
An estimation methodology is proposed to estimate the states and some kinetic parameters in a lipase production process. The state vector is composed of the biomass -X- and two substrates, an intracellular one -Sin- and an extracellular one -So-. It is estimated by an online measurement of the oxygen uptake rate. As the problem is too complex to be solved by a single stable observer, the estimation problem is divided in three subproblems, solved by estimation algorithms proved to be convergent. These algorithms use a minimal modelling of the process. It provides the estimation of the whole state and of two kinetic parameters, the specific biomass growth rate and the absorption rate of the substrate by the cells, considering the general equations of the dynamical model and the mass balance of the substrate in the bioreactor. This paper presents the design of the estimation algorithms and discusses their results in simulation and on experimental data from a pilot plan
Keywords :
biocontrol; chemical industry; parameter estimation; process control; proteins; state estimation; absorption rate; biomass; bioreactor; dynamical model; enzyme production process; extracellular substrate; intracellular substrate; kinetic parameter estimation; lipase production process; minimal modelling; oxygen uptake rate; state variable estimation; state vector; Biological control systems; Biological materials; Chemical industry; Parameter estimation; Process control; State estimation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control Applications, 1994., Proceedings of the Third IEEE Conference on
Conference_Location :
Glasgow
Print_ISBN :
0-7803-1872-2
Type :
conf
DOI :
10.1109/CCA.1994.381283
Filename :
381283
Link To Document :
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