Abstract
The growing need for automation in industrial and service sectors has emphasized the importance of systems that can minimize human involvement in repetitive and labor-intensive tasks, such as object transportation. This study proposes the design and implementation of an autonomous line follower robot to address the problem of manual object transfer along a predefined route. The developed system employs a BFD-1000 infrared sensor module for line detection, an Arduino UNO microcontroller for processing and control tasks, an L298N motor driver for actuating DC motors, and a mechanical structure composed of drive wheels and a robotic arm mechanism. The robot is programmed to follow a fixed path and transport objects from a pickup point to a designated drop-off location. Experimental evaluations demonstrate that the robot is capable of reliably transporting loads up to 100 grams, with stable path-tracking performance. The results indicate the potential of the proposed system as a cost-effective solution for simple automated transportation tasks.
Cite
CITATION STYLE
Utari, E. L., Buyung, I., Surbakti, H., Mustiadi, I., Sabdullah, M., & Orung, E. P. (2025). Smart Mobility Robot: Employing Line Follower Navigation for Object Movement. International Journal of Informatics and Computation, 7(1), 254–261. https://doi.org/10.35842/ijicom.v7i1.129
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