Multivariable end-point weighted generalized predictive control of a space crystal furnace
W. Ebert, R. Röstel, Beate Meffert, W. H. Weller, Franz Winkler, Michael Günther, L. Heese, O. Hochmuth, G. S. Kell
Abstract
W. Ebert, R. Röstel, Beate Meffert, W. H. Weller, Franz Winkler, Michael Günther, L. Heese, O. Hochmuth, G. S. Kell
Abstract
A multivariable end-point state weighted generalized predictive controller for the Bridgman crystal furnace TITUS is developed. A multivariable temperature prediction is done by a reduced dynamic representation using a matrix polynomial representation of the plant. The theoretical equivalence between the proposed multivariable control and Kalman filter state prediction is proven. It is shown, that the incorporation of the stochastic model improves the control performance.
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A multivariable end-point state weighted generalized predictive controller for the Bridgman crystal furnace TITUS is developed. A multivariable temperature prediction is done by a reduced dynamic representation using a matrix polynomial representation of the plant. The theoretical equivalence between the proposed multivariable control and Kalman filter state prediction is proven. It is shown, that the incorporation of the stochastic model improves the control performance.
Key concepts: Multivariable calculus, Control theory (sociology), Model predictive control, Representation (politics), Kalman filter, State-space representation, Equivalence (formal languages), Temperature control