Journal of Fuzzy Systems and Control (JFSC)
Vol. 4 No. 2 (2026): Vol. 4 No. 2 (2026)

Design and Implementation of PID and Fuzzy-PID Controllers for Ball-on-Plate

Quoc-Khanh Tran (Ho Chi Minh City University of Technology and Engineering (HCM-UTE))
Pham-Minh-Trong Vo (Ho Chi Minh City University of Technology and Engineering (HCM-UTE))
Hoang-Dung Nguyen (Ho Chi Minh City University of Technology and Engineering (HCM-UTE))
Tran-Nhat Dang (Ho Chi Minh City University of Technology and Engineering (HCM-UTE))
Thi-Ngoc-Thao Nguyen (Ho Chi Minh City University of Technology and Engineering (HCM-UTE))
Thi-Hong-Lam Le (Ho Chi Minh City University of Technology and Engineering (HCM-UTE))
Phong-Luu Nguyen (Ho Chi Minh City University of Technology and Engineering (HCM-UTE))
Thanh-Binh Nguyen (Ho Chi Minh City University of Technology and Engineering (HCM-UTE))
Van-Hiep Nguyen (Ho Chi Minh City University of Technology and Engineering (HCM-UTE))
Ngoc-Long Le (Ho Chi Minh City University of Technology and Engineering (HCM-UTE))



Article Info

Publish Date
22 Jul 2026

Abstract

This paper presents the design, implementation, and comparative evaluation of a conventional PID controller and a Fuzzy-PID controller for a nonlinear Ball-on-Plate (BoP). The primary objective is to stabilize the ball at a desired position on the plate while achieving a fast transient response and robustness against disturbances. A conventional PID controller is first designed and tuned using the Ziegler–Nichols method. To improve performance under nonlinear conditions, a Fuzzy-PID controller is developed in which fuzzy logic adaptively adjusts the PID gains online. The proposed controllers are evaluated through three stages: numerical simulation in MATLAB/Simulink, real-time implementation in Python, and experimental validation on a physical hardware platform. Compared with the conventional PID controller, the Fuzzy-PID controller achieves a reduction in maximum overshoot from 0.17% to below 0.1% in simulation, a shorter settling time (approximately 4.0 s for PID versus 2.8 s for Fuzzy-PID), and a reduction in steady-state positioning error of approximately 33–36% in hardware experiments (from ~3–14 pixels to ~2–9 pixels).

Copyrights © 2026






Journal Info

Abbrev

jfsc

Publisher

Subject

Control & Systems Engineering Electrical & Electronics Engineering Energy Engineering

Description

Journal of Fuzzy Systems and Control is an international peer review journal that published papers about Fuzzy Logic and Control Systems. The Journal of Fuzzy Systems and Control should encompass original research articles, review articles, and case studies that contribute to the advancement of the ...