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Synthesis of Hybrid Fuzzy Logic Law for Stable Control of Magnetic Levitation System

Chiem, N.X. and Thang, L.T. (2023) Synthesis of Hybrid Fuzzy Logic Law for Stable Control of Magnetic Levitation System. Journal of Robotics and Control (JRC), 4 (2). pp. 141-148. ISSN 27155056

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Abstract

In this paper, we present a method to design a hybrid fuzzy logic controller (FLC) for a magnetic levitation system (MLS) based on the linear feedforward control method combined with FLC. MLS has many applications in industry, transportation, but the system is strongly nonlinear and unstable at equilibrium. The fast response linear control law ensures that the ball is kept at the desired point, but does not remain stable at that point in the presence of noise or deviation from the desired position. The controller that combines linear feedforward control and FLC is designed to ensure ball stability and increase the system's fast-response when deviating from equilibrium and improve control quality. Simulation results in the presence of noise show that the proposed control law has a fast and stable effect on external noise. The advantages of the proposed controller are shown through the comparison results with conventional PID and FLC control laws. © 2023 Department of Agribusiness, Universitas Muhammadiyah Yogyakarta. All Rights Reserved.

Item Type: Article
Divisions: Faculties > Faculty of Control Engineering
Identification Number: 10.18196/jrc.v4i2.17537
Uncontrolled Keywords: Composition Rule; FLC; Magnetic Levitation System (MLS); Nonlinear Control; PID
URI: http://eprints.lqdtu.edu.vn/id/eprint/10856

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