Title :
Model predictive control of Czochralski crystal growth process
Author :
Ng, James ; Dubljevic, Stevan ; Aksikas, Ilyasse
Author_Institution :
Dept. of Chem. & Mater. Eng., Univ. of Alberta, Edmonton, AB, Canada
Abstract :
This paper presents a model predictive control (MPC) formulation for the Czochralski (CZ) crystal growth which is given by the discrete finite-dimensional system representation of a class of parabolic partial differential equations (PDEs) with time-varying features. The motivation behind this work is to address the problem of stabilizing, infinite horizon, linear quadratic regulator synthesis for PDEs with time-dependent parameters which affect the dynamics of the underlying system and appear in the state-space representation. The modal decomposition of the PDE facilitates its approximation by a finite-dimensional linear state-space system. A receding horizon regulator is proposed which incorporates the time-dependence of the PDE parameters and numerical simulations are carried out which demonstrate the optimal stabilization of the process under state and input constraints.
Keywords :
crystal growth from melt; discrete systems; linear systems; multidimensional systems; parabolic equations; partial differential equations; predictive control; state-space methods; Czochralski crystal growth process; discrete finite-dimensional system; finite-dimensional linear state-space system; model predictive control formulation; parabolic partial differential equations; receding horizon regulator; Crystals; Eigenvalues and eigenfunctions; Indexes; Mathematical model; Regulators; Temperature control; Temperature distribution;
Conference_Titel :
Control & Automation (MED), 2011 19th Mediterranean Conference on
Conference_Location :
Corfu
Print_ISBN :
978-1-4577-0124-5
DOI :
10.1109/MED.2011.5983228