• Home
  • Search
  • The effect of an evolutionary algorithm's rapid convergence on improving DC motor response using a PID controller
  • Cite Icon4
  • https://doi.org/10.1016/j.sciaf.2022.e01327Copy DOI Icon

The effect of an evolutionary algorithm's rapid convergence on improving DC motor response using a PID controller

Show More
  • Abstract
  • Literature Map
  • References
  • Citations
  • Similar Papers
Abstract

Mobile robots experience a lot of challenges with path tracking because of the significant problem with DC motor speed control. The particle swarm optimization (PSO) tuned proportional integral derivative (PID) controller is commonly used to control DC motor speed. However, it fails to reach the optimal solution quickly. Therefore, this paper demonstrates the application of the artificial bee colony (ABC) algorithm to tune a PID controller for speed regulation of a DC motor. The proposed approach was used to obtain the optimal PID controller gains (proportional, integral, and derivative) by minimizing the integral of time absolute error (ITAE) as the objective function. The analysis of statistical tests, transients, and frequency responses was conducted to test the rapid convergence of the proposed approach. Also, the performance of the proposed ABC-tuned PID controller has been compared with three variants of the PSO-tuned PID controller. The conducted simulation results and comparison with the proposed ABC controller and variant PSO controllers have shown that the proposed ABC-PID controller is more effective and robust than the variant PSO-PID controllers for the speed control of a DC motor.

Similar Papers
  • Research Article
  • Citations174

A novel performance criterion approach to optimum design of PID controller using cuckoo search algorithm for AVR system

  • Jun 20, 2018
  • Journal of the Franklin Institute
  • Zafer Bingul +1
  • Research Article
  • Citations1

Proportional integral derivative DC motor speed control system for xy plane movements

  • Apr 01, 2019
  • IOP Conference Series: Materials Science and Engineering
  • Hadian Satria Utama +2
  • Research Article
  • Citations36

PID Control Design Using AGPSO Technique and Its Application in TITO Reverse Osmosis Desalination Plant

  • Jan 01, 2022
  • IEEE Access
  • Rajesh Mahadeva +3
  • Conference Article
  • Citations26

The comparison of optimization for active steering control on vehicle using PID controller based on artificial intelligence techniques

  • Aug 01, 2016
  • Dwi Hendra Kusuma +2
  • Book Chapter

Intelligent Power System Control and Healthcare Data Analysis

  • May 28, 2024
  • Arpit Yadav +1
  • Conference Article
  • Citations10

PSO-based on-line tuning PID controller for setpoint changes and load disturbance

  • Jun 01, 2011
  • Ping-Lin Chen +2
  • Conference Article
  • Citations22

FLC-based PID controller tuning for sensorless speed control of DC motor

  • Feb 01, 2018
  • Abdullah Y Al-Maliki +1
  • Conference Article
  • Citations7

Effect of Variable Damping Ratio on design of PID Controller

  • Sep 01, 2015
  • Rashmi Sinha +2
  • Book Chapter

Disturbance Observer‐ Based PID and Resonant Controller

  • Feb 21, 2020
  • Liuping Wang
  • Research Article

Optimasi MPPT Pada Stasiun Pengisian Baterai Menggunakan Metode PID

  • Nov 30, 2024
  • INTER TECH
  • Ahmadi +1
  • Research Article

Analysis And Optimization of Automotive Systems Based on PID Control

  • Nov 28, 2023
  • Highlights in Science Engineering and Technology
  • Yumou Wei
  • Book Chapter
  • Citations1

Optimal LQR and Smith Predictor Based PID Controller Design for NMP System

  • Jan 01, 2022
  • Divya Pandey +2
  • Conference Article
  • Citations4

Design of PID Controller for Paper Machine Headbox using Particle Swarm Optimisation (PSO)

  • Apr 01, 2019
  • Parvesh Saini +1
  • Research Article

English

  • Jun 30, 2024
  • International Journal of Electrical and Electronics Engineering
  • Nagendra P +1
  • Research Article
  • Citations11

Improved Adaptive PSO-based Gain Tuning for PID Controllers in Utility Boilers

  • Jan 01, 2023
  • Procedia Computer Science
  • U Kruthika +1
Cactus Communications logo

Copyright 2026 Cactus Communications. All rights reserved.