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Speed Control of DC Motors: Optimal Closed PID-Loop Model Predictive Control

Oluwasegun Ayokunle Somefun, Kayode Francis Akingbade, Folasade M. Dahunsi

Year
2020
Citations
5
Access
Open access

Abstract

One of the lowest level control tasks, especially in robotics and other manufacturing industries, upon which other high-level controls are dependent, is the speed control of a dc motor. Usually, tuning the parameters of the proportional integral derivative (PID) controller for this task employs established conventional methods that expose the knowledge of nominal process model parameters to the control algorithm. These methods have found widespread use. Notwithstanding, a promising line of inquiry is: to search alternate possibilities of a PID being designed to automatically achieve comparable good control performance without using a formal mathematical process model approximation of the actual physical system, such as dc motor plant, in the frequency or time domain. In this paper, we propose an intelligent PID design method,

Keywords

Model predictive controlPID controllerControl theory (sociology)DC motorLoop (graph theory)Control engineeringClosed loopControl (management)Computer scienceEngineering

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