Load rotation control in crane system using hierarchical sliding mode control combined with particle swarm optimization

Authors

  • Thi Thanh Nga Nguyen Hanoi University of Science and Technology
  • Van Thanh Duong Hanoi University of Science and Technology
  • Thanh Phuong Tran Hanoi University of Science and Technology
  • Duc Duong Minh Hanoi University of Science and Technology

DOI:

https://doi.org/10.64032/mca.v29i2.284

Keywords:

Particle Swarm Optimization, Hierarchical Sliding Mode Control, Vibration Suppression, Underactuated System

Abstract

This study focuses on controlling the direction of the load in the bridge crane system, aiming to ensure accurate direction control while simultaneously damping the residual oscillation caused by the cable twist. A hierarchical sliding mode control algorithm combined with swarm optimization was proposed to achieve that goal. The stability of the system was proven based on the Lyapunov criterion. An objective function, including the settling time and residual oscillation components, was constructed to determine the controller parameters, and the swarm optimization algorithm was applied to solve the problem of optimizing the objective function. The simulation results showed that the proposed method ensured accurate load direction control with fast residual oscillation damping. Comparisons with the input signal shaping method were also made to demonstrate the superiority of the proposed method.

Downloads

Download data is not yet available.

Published

17-06-2025

How to Cite

Nguyen, T. T. N., Duong, V. T., Tran, T. P., & Duong Minh, D. (2025). Load rotation control in crane system using hierarchical sliding mode control combined with particle swarm optimization. Journal of Measurement, Control, and Automation, 29(2), 18–24. https://doi.org/10.64032/mca.v29i2.284

Issue

Section

Article

Similar Articles

<< < 6 7 8 9 10 11 

You may also start an advanced similarity search for this article.