A comparative study of conventional PID and intelligent Fuzzy-PID FordDC motor speed control

Sim, S.Y. and Goh, H.H. and Utomo, W.M. and Buswig, Y.M.Y. and Lim, A.J.M.S. and Goh, K.C. and Zin, N.M. and Cham, C.L. and Ahmad, M.Y. (2018) A comparative study of conventional PID and intelligent Fuzzy-PID FordDC motor speed control. Journal of Fundamental and Applied Sciences, 10 (5S). pp. 282-297. ISSN 1112-9867

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Abstract

The development of a Self Tuning Fuzzy proportional-integral-derivative (PID) controller was done to be compared with the conventional controller that is being used in a direct current (DC) motor. Simulation study is used to overcome the appearance of nonlinearities and uncertainties in the system with the proposed controller for the armature voltage controlled DC motors. Each parameter of the Fuzzy-PID controller is self tuned using 49 fuzzy rules in the fuzzy logic controller. The proportional, integral and derivative (KP,KI,KD) gains of the PID controller is being tuned by the controller. Different types of membership functions are evaluated in the fuzzy control and the best performance will be used in Fuzzy-PID for comparative analysis with the conventional PID.The FIS editor from MATLAB defines the membership function and the rules. Load disturbances from a variety of speed response and the step response are simulated from different scenarios.The Fuzzy PID has resulted to be more robust and it is insensitive to variations in the parameters

Item Type: Article
Uncontrolled Keywords: Fuzzy logic; DC motor; speed control
Subjects: T Technology > T Technology (General)
T Technology > TJ Mechanical engineering and machinery > TJ210.2-211.47 Mechanical devices and figures. Automata. Ingenious mechanisms. Robots (General)
Divisions: Faculty of Civil Engineering and Built Environment > Department of Architecture
Depositing User: UiTM Student Praktikal
Date Deposited: 17 Jan 2022 01:45
Last Modified: 17 Jan 2022 01:45
URI: http://eprints.uthm.edu.my/id/eprint/5585

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