DocumentCode :
1604243
Title :
Modified Smith predictor scheme for periodic disturbances reduction in the continuous casting process
Author :
Jabri, K. ; Dumur, D. ; Godoy, E. ; Mouchette, A. ; Bèle, B.
Author_Institution :
MC Dept., ArcelorMittal Res., Maizieres-Les-Metz, France
fYear :
2009
Firstpage :
1091
Lastpage :
1096
Abstract :
In the continuous casting process, various control strategies are used to reduce the mold level fluctuations which cause surface defects in the final product. This paper proposes a control structure able to improve the reduction of the bulging effect on the mold level. It is based on the Astroumlm´s modified Smith predictor scheme which presents the advantage that the setpoint response is decoupled from the disturbance rejection transfer function. Hinfin control theory is utilized to develop the controller of this second loop. Both the disturbances rejection and the robust stabilization are considered in this design. Effective tuning rules are also given. Simulation results confirm that the proposed design is more effective than the one based on the PFC control law currently implemented in several real plants.
Keywords :
Hinfin control; casting; continuous production; control system synthesis; flaw detection; moulding; periodic control; predictive control; process control; robust control; steel industry; transfer functions; Astroumlm´s modified Smith predictor scheme; Hinfin control theory; PFC control law; bulging effect reduction; continuous casting process; controller tuning rule; mold level fluctuation; periodic disturbance reduction transfer function; process control strategy; product surface defect; robust stabilization; second-loop controller development; setpoint response; steel industry; Actuators; Casting; Control theory; Fluctuations; Level control; Manufacturing processes; Process control; Robustness; Steel; Transfer functions;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Asian Control Conference, 2009. ASCC 2009. 7th
Conference_Location :
Hong Kong
Print_ISBN :
978-89-956056-2-2
Electronic_ISBN :
978-89-956056-9-1
Type :
conf
Filename :
5276307
Link To Document :
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