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

Software-Based Digital PID Control for a Single-Tank Water Level System

Quoc-Toan Nguyen (Ho Chi Minh City University of Technology and Engineering (HCM-UTE))
Hai-Duong Nguyen (Ho Chi Minh City University of Technology and Engineering (HCM-UTE))
Anh-Tuan Nguyen (Ho Chi Minh City University of Technology and Engineering (HCM-UTE))
Tan-Khang Nguyen (Ho Chi Minh City University of Technology and Engineering (HCM-UTE))
Quoc-Hung Nguyen (Ho Chi Minh City University of Technology and Engineering (HCM-UTE))
Phuc-Khanh Dang (Ho Chi Minh City University of Technology and Engineering (HCM-UTE))
Truong-Viet Nguyen (Ho Chi Minh City University of Technology and Engineering (HCM-UTE))
Quoc-Bao Nguyen (Unknown)
Xuan-Cuong Le (Ho Chi Minh City University of Technology and Engineering (HCM-UTE))
Van-Hai Nguyen (Unknown)
Huynh-The-Hung Nguyen (Ho Chi Minh City University of Technology and Engineering (HCM-UTE))
Bao-Trung Mai (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))
That-Ngoc-Hai Ton (Ho Chi Minh City University of Technology and Engineering (HCM-UTE))
Tan-Loc Pham (Unknown)
Minh-Tan Nguyen (Ho Chi Minh City University of Technology and Engineering (HCM-UTE))



Article Info

Publish Date
18 Jul 2026

Abstract

The single tank system is one of the fundamental systems in the field of automatic control and is a suitable choice for implementing system control using a PID controller. Nowadays, the single tank system is widely used in laboratories for conducting experiments related to PID control. Due to its low cost, easily available components, simple construction, and ease of observation, the single tank system is an appropriate model for research in automatic control systems. The primary control method applied to the single tank system is the digital PID control method, also known as discrete PID control, the PID parameters (Kp, Kd, Ki) are selected by the trial-and-error method. Therefore, this paper investigates the variation of transient responses when changing the parameters of the PID controller in order to evaluate the model during laboratory implementation. The main objective of this paper is to design a discrete PID controller through simulation and to experimentally investigate its performance on a real single tank system. Experimental results show that the system operates stably, and the pump speed can be adjusted by changing the parameters of the PID controller. The overshoot starts at over 0.2%, the steady-state error is about 0.02 cm, and the settling time is approximately 4.5 to 5 seconds.

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 ...