DocumentCode
1292078
Title
Experimental evaluation of predictive temperature control for a batch reactor system
Author
Katende, Edward ; Jutan, Arthur
Author_Institution
Honeywell Hi-Spec Solutions, London, Ont., Canada
Volume
8
Issue
1
fYear
2000
fDate
1/1/2000 12:00:00 AM
Firstpage
2
Lastpage
13
Abstract
A nonlinear generalized predictive control (NLGPC) algorithm developed by Katende and Jutan (1996) is tested on a nonlinear batch reactor system by carrying out a number of experiments and comparing its performance with other control strategies. This experimental setting allows a more practical comparison of the relative merits of these controllers. The NLGPC is shown to outperform the constrained self-tuning PID (STPID) controller by Katende and Jutan (1993), and the generalized minimum variance (GMV) controller by Clarke and Gawthrope (1975). It is also shown to have better performance than the well-known generalized predictive control (GPC) algorithm by Clarke et al. (1987). The advantage of the NLGPC over the other controllers is attributed to its adaptive nature and use of nonlinear process models in its design
Keywords
adaptive control; batch processing (industrial); chemical technology; nonlinear control systems; predictive control; process control; temperature control; batch reactor system; constrained self-tuning controller; control strategies; generalized minimum variance controller; generalized predictive control algorithm; nonlinear generalized predictive control; nonlinear process models; predictive temperature control; Adaptive control; Control systems; Inductors; Nonlinear control systems; Prediction algorithms; Predictive control; Programmable control; System testing; Temperature control; Three-term control;
fLanguage
English
Journal_Title
Control Systems Technology, IEEE Transactions on
Publisher
ieee
ISSN
1063-6536
Type
jour
DOI
10.1109/87.817687
Filename
817687
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