ADAPTIVE-CONTROL OF A NONLINEAR FERMENTATION PROCESS VIA MRAC TECHNIQUE

被引:10
作者
ZENG, FY
DAHHOU, B
NIHTILA, MT
机构
[1] UPS, INSA,CTR TRANSFERT BIOTECHNOL & MICROBIOL,CNRS, URA 544, TOULOUSE, FRANCE
[2] HELSINKI UNIV TECHNOL, FAC INFORMAT TECHNOL, CONTROL ENGN LAB, SF-02150 ESPOO 15, FINLAND
关键词
MODEL REFERENCE ADAPTIVE CONTROL; NONLINEAR ADAPTIVE CONTROL; LYAPUNOV METHOD; FERMENTATION PROCESS;
D O I
10.1016/0307-904X(93)90094-W
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
A control problem arising in typical fermentation process studies is solved here. Fermentation, i.e., microbial growth and substrate consumption, is described by a nonlinear differential system including a set of unknown parameters that may vary in time. The control objective is to get the state of the system to track the state of a given reference model despite the disturbances and system parameter uncertainties. The concentration of microbes is almost always impossible to determine on-line. The evolution of the main substrate is, however, measurable on-line. The system studied is controlled by varying the dilution rate of the concentrated substrate liquid feed. The fixed parameter control law that serves as a basis for the adaptive method uses the calculated references of the specific growth rate and the dilution rate of the reference model. Adaptive state estimation is based on obtaining a stable estimator for the joint system of states and parameters via a Lyapunov technique. The structure of the adaptive controller is determined by the requirement to obtain stable reference model tracking. Application of Lyapunov's method gives a PI-type controller with adaptively adjustable coefficients. Given stability proofs are supported by some realistic simulation results.
引用
收藏
页码:58 / 69
页数:12
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