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AuthorRahme, Sandy
AuthorAbbas, Hossam S.
AuthorMeskin, Nader
AuthorTóth, Roland
AuthorMohammadpour, Javad
Available date2021-04-22T10:16:23Z
Publication Date2016
Publication NameControl Engineering Practice
ResourceScopus
ISSN9670661
URIhttp://dx.doi.org/10.1016/j.conengprac.2015.12.022
URIhttp://hdl.handle.net/10576/18302
AbstractIn this paper, linear parameter-varying (LPV) control is considered for a solution copolymerization reactor, which takes into account the time-varying nature of the parameters of the process. The nonlinear model of the process is first converted to an exact LPV model representation in the state-space form that has a large number of scheduling variables and hence is not appropriate for control design purposes due to the complexity of the LPV control synthesis problem. To reduce such complexity, two approaches are proposed in this paper. First, an approximate LPV representation with only one scheduling variable is obtained by means of a parameter set mapping (PSM). The second approach is based on reformulating the nonlinear model so that it provides an LPV model with a fewer number of scheduling parameters but preserves the same input-output behavior. Moreover, in the implementation of the LPV controllers synthesized with the derived models, the unmeasurable scheduling variables are estimated by an extended Kalman filter. Simulation results using the nonlinear model of the copolymerization reactor are provided in order to illustrate the performance of the proposed controllers in reducing the convergence time and the control effort.
Languageen
PublisherElsevier Ltd
SubjectCopolymerization reactor
Extended Kalman filter
Linear parameter-varying systems
LPV control
Parameter set mapping
TitleLPV model development and control of a solution copolymerization reactor
TypeArticle
Pagination98-110
Volume Number48


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