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A new intelligent control strategy for csth temperature regulation based on the starfish optimization algorithm

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Akademik Birimler

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İzci, Davut

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Ekinci, Serdar
Jabari, Mostafa
Bajaj, Mohit
Blazek, Vojtech
Prokop, Lukas
Mirjalili, Seyedali

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Nature portfolio

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Temperature regulation in nonlinear and highly dynamic processes such as the continuous stirred-tank heater (CSTH) is a challenging task due to the inherent system nonlinearities and disturbances. This study proposes a novel metaheuristic-driven control strategy, combining the two degrees of freedom-PID acceleration (2DOF-PIDA) controller with the recently developed starfish optimization algorithm (SFOA) for temperature control of the CSTH process. The 2DOF-PIDA controller enhances system performance by decoupling setpoint tracking and disturbance rejection, while the SFOA ensures optimal tuning of controller parameters by leveraging its powerful exploration and exploitation capabilities. Simulation results validate the effectiveness of the proposed approach, demonstrating improved tracking accuracy, disturbance rejection, and robustness compared to conventional methods. The combination of 2DOF-PIDA and SFOA provides a flexible and efficient solution for controlling highly nonlinear systems, with significant implications for industrial temperature regulation applications.

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Stırred-tank heater, Predıctıve control , Nonlinear continuous stirred-tank heater (CSTH), Starfish optimization algorithm (SFOA), Temperature control of highly nonlinear system, Two degrees of freedom-PID acceleration (2DOF-PIDA) controller, Science & Technology, Multidisciplinary Sciences, Science & Technology - Other Topics

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