ISSN : 2671-9940(Print)
ISSN : 2671-9924(Online)
ISSN : 2671-9924(Online)
Journal of the Korean Society of Fisheries and Ocean Technology Vol.60 No.4 pp.389-396
DOI : https://doi.org/10.3796/KSFOT.2024.60.4.389
DOI : https://doi.org/10.3796/KSFOT.2024.60.4.389
Model predictive controller design for precise speed servo control of DC motors
Abstract
In this paper, we deal with the design of a model predictive control (MPC) for precise speed servo control of DC motor systems. The proposed controller is designed in the form of optimal control that calculates and outputs the optimized control input under constraints for each sampling. In particular, MPC designs the control inputs in advance for each sampling and predicts the outputs using them. Thus, it shows excellent control performance even in the case of disturbance or model uncertainty. The effectiveness of the proposed controller was demonstrated through computer simulations using MATLAB/Simulink and DC motor experimental system using real time controller. Moreover, the effectiveness of the proposed controller was confirmed by comparing its control performance with PID controller, which was tested under the same experimental condition as the MPC.