An Improved MPC-PSO controller for the performance enhancement of a mobile robot in tracking a dynamic target

A mobile robot tracking a moving target is a challenging research area for real-time implementation. The proposed work uses a hybrid controller with an error dynamic model to provide improved error convergence. The Model Predictive Controller – Particle Swarm Optimization (IMPC-PSO)-based controller with Deb’s rule makes the robot more suitable for target tracking with quick and smooth error convergence by considering feasible optimal solutions without constraint violations. Performance investigations among conventional controller designs reveal the appropriateness of the proposed model for a real robot working with unavoidable system disturbances. The comparison shows the proposed controller is suitable for tracking applications, demanding short travel distances and smooth transit towards a dynamic target without jerk and vibration. Finally, the effectiveness of the controller is experimentally verified on QBOT 2e to validate simulation results in a confined workspace.

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Publication Details

Journal
Automatika
Published
2026-09-15
DOI
https://doi.org/10.1080/00051144.2026.2719253
Primary Topic
Control and Dynamics of Mobile Robots
Type
article
Field-Weighted Citation Impact
0.00
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article

An Improved MPC-PSO controller for the performance enhancement of a mobile robot in tracking a dynamic target

M. Willjuice Iruthayarajan, M. Sivapalanirajan
Automatika
Control and Dynamics of Mobile Robots
article

An Improved MPC-PSO controller for the performance enhancement of a mobile robot in tracking a dynamic target

M. Willjuice Iruthayarajan, M. Sivapalanirajan
article en

Abstract

A mobile robot tracking a moving target is a challenging research area for real-time implementation. The proposed work uses a hybrid controller with an error dynamic model to provide improved error convergence. The Model Predictive Controller – Particle Swarm Optimization (IMPC-PSO)-based controller with Deb’s rule makes the robot more suitable for target tracking with quick and smooth error convergence by considering feasible optimal solutions without constraint violations. Performance investigations among conventional controller designs reveal the appropriateness of the proposed model for a real robot working with unavoidable system disturbances. The comparison shows the proposed controller is suitable for tracking applications, demanding short travel distances and smooth transit towards a dynamic target without jerk and vibration. Finally, the effectiveness of the controller is experimentally verified on QBOT 2e to validate simulation results in a confined workspace.

AutomatikaVol. 67(1)
National College (US)
Openalex Percentile: Top 14%
Control and Dynamics of Mobile Robots
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An Improved MPC-PSO controller for the performance enhancement of a mobile robot in tracking a dynamic target — M. Willjuice Iruthayarajan, M. Sivapalanirajan · Automatika (2026) | TGRS Research Map | TGRS