LQR and Pole Placement Controllers with Integral Action Design Technique and Performance Analysis for Control of Temperature Field in Continuous Casting Process
This paper presents the design of Linear Quadratic Regulator and Pole Placement controllers with integral action using MATLAB and Simulink for controlling the temperature field in the secondary cooling zone of a continuous casting process. The secondary cooling zone in continuous casting represents...
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Published in | 2023 24th International Carpathian Control Conference (ICCC) pp. 489 - 494 |
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Main Authors | , |
Format | Conference Proceeding |
Language | English |
Published |
IEEE
12.06.2023
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Subjects | |
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Abstract | This paper presents the design of Linear Quadratic Regulator and Pole Placement controllers with integral action using MATLAB and Simulink for controlling the temperature field in the secondary cooling zone of a continuous casting process. The secondary cooling zone in continuous casting represents a distributed parameter system. During steel production, the type of steel produced changes continuously, necessitating a control system that can respond quickly and flexibly. We compared the performance of the Linear Quadratic Regulator and Pole Placement control techniques for the temperature field in the secondary cooling zone by analyzing the system's response. The simulation results demonstrate that the Linear Quadratic Regulator technique outperforms the Pole Placement technique for the specified system. |
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AbstractList | This paper presents the design of Linear Quadratic Regulator and Pole Placement controllers with integral action using MATLAB and Simulink for controlling the temperature field in the secondary cooling zone of a continuous casting process. The secondary cooling zone in continuous casting represents a distributed parameter system. During steel production, the type of steel produced changes continuously, necessitating a control system that can respond quickly and flexibly. We compared the performance of the Linear Quadratic Regulator and Pole Placement control techniques for the temperature field in the secondary cooling zone by analyzing the system's response. The simulation results demonstrate that the Linear Quadratic Regulator technique outperforms the Pole Placement technique for the specified system. |
Author | Belavy, Cyril Zarghoon, Sohaibullah |
Author_xml | – sequence: 1 givenname: Sohaibullah surname: Zarghoon fullname: Zarghoon, Sohaibullah email: sohaibullah.zarghoon@stuba.sk organization: Solvak University of Technology,Institute of Automation, Measurement and Applied Informatics, Faculty of Mechanical Engineering,Bratislava,Slovakia – sequence: 2 givenname: Cyril surname: Belavy fullname: Belavy, Cyril email: cyril.belavy@stuba.sk organization: Solvak University of Technology,Institute of Automation, Measurement and Applied Informatics, Faculty of Mechanical Engineering,Bratislava,Slovakia |
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Snippet | This paper presents the design of Linear Quadratic Regulator and Pole Placement controllers with integral action using MATLAB and Simulink for controlling the... |
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StartPage | 489 |
SubjectTerms | Casting continuous casting Cooling distributed parameter system linear quadratic regulator MATLAB & simulink pole placement Process control Production Regulators Simulation Software packages |
Title | LQR and Pole Placement Controllers with Integral Action Design Technique and Performance Analysis for Control of Temperature Field in Continuous Casting Process |
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