In this work an Advanced Process Control approach aimed to the control and the optimization of a cement rotary kiln is proposed. Model Predictive Control techniques have been adopted for the controller and a system architecture based on two optimization layers is proposed. A suitable design of each layer and their interaction policy allowed to improve control performances and to meet possibly variable economic goals. Simulation results show the effectiveness of the adopted control architecture and optimization problem formulation. Results of practical implementation of the proposed controller on a cement rotary kiln unit confirm the improvement of the performances in terms of energy efficiency, product quality and environmental impact when compared to the previous control system.

Cement rotary kiln: Constraints handling and optimization via model predictive control techniques / Zanoli, Silvia Maria; Pepe, Crescenzo; Rocchi, M.. - ELETTRONICO. - (2015), pp. 288-293. (Intervento presentato al convegno 5th Australian Control Conference (AUCC), 2015 tenutosi a Gold Coast, Australia nel 5-6 Nov 2015).

Cement rotary kiln: Constraints handling and optimization via model predictive control techniques

ZANOLI, Silvia Maria;PEPE, CRESCENZO;
2015-01-01

Abstract

In this work an Advanced Process Control approach aimed to the control and the optimization of a cement rotary kiln is proposed. Model Predictive Control techniques have been adopted for the controller and a system architecture based on two optimization layers is proposed. A suitable design of each layer and their interaction policy allowed to improve control performances and to meet possibly variable economic goals. Simulation results show the effectiveness of the adopted control architecture and optimization problem formulation. Results of practical implementation of the proposed controller on a cement rotary kiln unit confirm the improvement of the performances in terms of energy efficiency, product quality and environmental impact when compared to the previous control system.
2015
978-1-9221-0769-5
978-1-9221-0770-1
978-1-4673-9552-6
978-1-4673-6737-0
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11566/234573
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