Title :
Multivariable Nonlinear Control of a Continuous Polymerization Reactor with Singular Characteristic Matrix: An Experimental Study
Author :
Soroush, Masoud ; Kravaris, Costas
Author_Institution :
Department of Chemical Engineering, The University of Michigan, Ann Arbor, MI 48109-2136
Abstract :
In this experimental work, the globally linearizing control (GLC) method is implemented on a micro-computer to control conversion and temperature in a continuous stirred tank reactor by manipulating the reactor residence time and two coordinated heat inputs. Conversion is inferred from on-line measurements of density and temperature. A key feature of the control problem is that its characteristic matrix is generically singular. Singularity of the characteristic matrix is handled by using a dynamic state feedback. The performance of the controller is evaluated in terms of its ability in performing a fast and smooth reactor start-up and tracking set-point changes in the presence of active input and state constraints.
Keywords :
Chemical engineering; Chemical reactors; Continuous-stirred tank reactor; Control system synthesis; Inductors; Mathematical model; Polymers; Temperature control; Testing; Weight control;
Conference_Titel :
American Control Conference, 1993
Conference_Location :
San Francisco, CA, USA
Print_ISBN :
0-7803-0860-3