Title :
Optimized trajectory tracking control with disturbance attenuation of dynamic multistage metal-cooling Processes
Author :
Samaras, Nicholas S. ; Simaan, Marwan A.
Author_Institution :
Dept. of Inf. Technol. & Telecommun., Larissa Inst. of Technol., Greece
Abstract :
This paper investigates how a control structure tracks a trajectory of multistage dynamic processes optimally in the presence of exogenous linear or nonlinear unknown system disturbances. In accordance with previous work, run-out table temperature control for hot strip cooling (a prime model of metal-cooling multistage process) serves as the basis system. We study optimal solutions in terms of disturbance attenuation of various characteristics with minimal degradation on the performance of the system. Optimization and dynamic programming are instrumental in obtaining meaningful and tractable problem formulations and determining the necessary and sufficient conditions, which lead to optimal and efficient solutions in relation to the presence of the disturbance. The effectiveness of this development is presented in terms of robust system performance and verified by way of simulation.
Keywords :
cold working; cooling; dynamic programming; linear systems; metal products; metalworking; nonlinear systems; optimal control; position control; temperature control; tracking; disturbance attenuation; dynamic multistage metal-cooling process; dynamic programming; exogenous linear unknown system disturbance; exogenous nonlinear unknown system disturbance; hot strip cooling; optimization; run-out table; temperature control; trajectory tracking control; Attenuation; Control systems; Cooling; Degradation; Nonlinear control systems; Nonlinear dynamical systems; Optimal control; Strips; Temperature control; Trajectory; Disturbance; ROT; cooling; multistage process; optimization; run-out table; trajectory tracking control;
Journal_Title :
Industry Applications, IEEE Transactions on
DOI :
10.1109/TIA.2004.830775