DocumentCode
3438923
Title
Nonlinear model predictive control of a batch polymerization process
Author
Schei, Tor Steinar ; Singstad, Peter
Author_Institution
SINTEF, Trondheim, Norway
Volume
6
fYear
1998
fDate
21-26 Jun 1998
Firstpage
3381
Abstract
A Newton-type nonlinear model predictive control (NMPC) algorithm is applied through a simulation study to a batch reactor for polymerization of phenol-formaldehyde resole resins. The NMPC algorithm is combined with a recursive state and parameter estimation algorithm and a nonlinear state-space model, which is used both for the estimation and the prediction. The state-space process model is developed from first principles, and uncertain parameters are estimated off-line from logged process measurements. Some of the parameters can not be assumed to be constant during the batch, and should be estimated online during operation. NMPC strategies are compared with the conventional reactor control. The basic strategy is to maximize the reaction rate, with constraints on the reactor temperature and the heat of reaction. The latter constraint is determined by available cooling capacity. The simulation study indicates a potential reduction in batch cycle time with good safety margins
Keywords
batch processing (industrial); chemical industry; nonlinear control systems; polymerisation; predictive control; process control; recursive estimation; state estimation; state-space methods; batch process; model predictive control; nonlinear control systems; parameter estimation; phenol-formaldehyde; polymerization; process control; recursive estimation; state estimation; state-space model; Inductors; Parameter estimation; Polymers; Prediction algorithms; Predictive control; Predictive models; Recursive estimation; Resins; State estimation; Temperature;
fLanguage
English
Publisher
ieee
Conference_Titel
American Control Conference, 1998. Proceedings of the 1998
Conference_Location
Philadelphia, PA
ISSN
0743-1619
Print_ISBN
0-7803-4530-4
Type
conf
DOI
10.1109/ACC.1998.703205
Filename
703205
Link To Document