2008Unpublished venueRequires access

Linear quadratic regulator (LQR) controller design for DC motor speed using matlab application

Rajab Mohd Redha

Open publisher page 1 citations

Abstract

This project is a about control system. To control the system, simulation and experimental investigation into the development of LQR controller using MATLAB/SIMULINK software. The simulation development of the LQR controller with the mathematical model of DC motor. and trial and error method to tune the system controller. The LQR parameter is to be tested with an actual motor also with the LQR controller in MATLAB/SIMULINK software. Data acquisition is used In order to implement the LQR controller from the software to the actual dc motor. From this project, the result performance of the LQR controller is compared in term of response and the assessment is presented.

About this research paper

What this paper is about

This project is a about control system. To control the system, simulation and experimental investigation into the development of LQR controller using MATLAB/SIMULINK software. The simulation development of the LQR controller with the mathematical model of DC motor. and trial and error method to tune the system controller. The LQR parameter is to be tested with an actual motor also with the LQR controller in MATLAB/SIMULINK software. Data acquisition is used In order to implement the LQR controller from the software to the actual dc motor. From this project, the result performance of the LQR controller is compared in term of response and the assessment is presented.

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Key contribution

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Available abstract

This project is a about control system. To control the system, simulation and experimental investigation into the development of LQR controller using MATLAB/SIMULINK software. The simulation development of the LQR controller with the mathematical model of DC motor. and trial and error method to tune the system controller. The LQR parameter is to be tested with an actual motor also with the LQR controller in MATLAB/SIMULINK software. Data acquisition is used In order to implement the LQR controller from the software to the actual dc motor. From this project, the result performance of the LQR controller is compared in term of response and the assessment is presented.

Key concepts: Linear-quadratic regulator, Control theory (sociology), MATLAB, Controller (irrigation), Open-loop controller, Control engineering, DC motor, Software

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