A simulation and experimental study on wheeled mobile robot path control in road roundabout environment

Author:

Ali Mohammed AH1ORCID,Mailah Musa2

Affiliation:

1. Faculty of Manufacturing Engineering, Universiti Malaysia Pahang (UMP), Pekan, Malaysia

2. Faculty of Mechanical Engineering, Universiti Teknologi Malaysia (UTM), Johor Bahru, Malaysia

Abstract

A robust control algorithm for tracking a wheeled mobile robot navigating in a pre-planned path while passing through the road’s roundabout environment is presented in this article. The proposed control algorithm is derived from both the kinematic and dynamic modelling of a non-holonomic wheeled mobile robot that is driven by a differential drive system. The road’s roundabout is represented in a grid map and the path of the mobile robot is determined using a novel approach, the so-called laser simulator technique within the roundabout environment according to the respective road rules. The main control scheme is experimented in both simulation and experimental study using the resolved-acceleration control and active force control strategy to enable the robot to strictly follow the predefined path in the presence of disturbances. A fusion of the resolved-acceleration control–active force control controller with Kalman Filter has been used empirically in real time to control the wheeled mobile robot in the road’s roundabout setting with the specific purpose of eliminating the noises. Both the simulation and the experimental results show the capability of the proposed controller to track the robot in the predefined path robustly and cancel the effect of the disturbances.

Funder

Universiti Malaysia Pahang

Publisher

SAGE Publications

Subject

Artificial Intelligence,Computer Science Applications,Software

Cited by 9 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Cascade Controller for Differential Wheeled Robot Posture Control to Follow Moving Target;2023 9th International Conference on Wireless and Telematics (ICWT);2023-07-06

2. LiDAR Based Trajectory-Tracking of an Autonomous Differential Drive Mobile Robot Using Fuzzy Sliding Mode Controller;IEEE Access;2022

3. Energy-Efficient Local Path Planning of a Self-Guided Vehicle by Considering the Load Position;IEEE Access;2022

4. Neural Dynamic Programming with Application to Wheeled Mobile Robot;Advances in Intelligent Systems and Computing;2022

5. Discrete Optimal Tracking Control for a Two-Wheel Mobile Robot Driven by DC Motors;2021 IEEE Jordan International Joint Conference on Electrical Engineering and Information Technology (JEEIT);2021-11-16

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