Автори

  • Domazetovska Simona Faculty of Mechanical Engineering, “Ss. Cyril and Methodius” University in Skopje, P.O.Box 464, MK-1001 Skopje, Republic of North Macedonia
  • Andonovska Katerina Faculty of Mechanical Engineering, “Ss. Cyril and Methodius” University in Skopje, P.O.Box 464, MK-1001 Skopje, Republic of North Macedonia
  • Mačavelovska Bojana Faculty of Mechanical Engineering, “Ss. Cyril and Methodius” University in Skopje, P.O.Box 464, MK-1001 Skopje, Republic of North Macedonia
  • Andrej Cvetanovski Faculty of Mechanical Engineering, “Ss. Cyril and Methodius” University in Skopje, P.O.Box 464, MK-1001 Skopje, Republic of North Macedonia
  • Ademi Medin Faculty of Mechanical Engineering, “Ss. Cyril and Methodius” University in Skopje, P.O.Box 464, MK-1001 Skopje, Republic of North Macedonia
  • Janevski Petar Faculty of Mechanical Engineering, “Ss. Cyril and Methodius” University in Skopje, P.O.Box 464, MK-1001 Skopje, Republic of North Macedonia
  • Pecioski Damjan Faculty of Mechanical Engineering, “Ss. Cyril and Methodius” University in Skopje, P.O.Box 464, MK-1001 Skopje, Republic of North Macedonia

ДОИ:

https://doi.org/10.55302/MESJ2543293dm

Клучни зборови:

Апстракт

Референци

Saw, K. K., Mon, L. Y. (2019): Design and construction of line following robot using Arduino. International Journal of Trend in Scientific Research and Development, 3(4), pp. 939–941.

Saad, W. H. M., Karim, S. A. A., Azhar, N., Manap, Z., Soon, Y. Y., Ibrahim, M. M. (2018): Line follower mo-bile robot for surveillance camera monitoring system. Journal of Telecommunication, Electronic and Computer Engi¬neer¬ing (JTEC), 10 (2–7), pp. 1–5.

Oltean, S. E. (2019): Mobile robot platform with Arduino Uno and Raspberry Pi for autonomous navigation. Proce¬dia Manufacturing, 32, pp. 572–577.

Barua, V., Neloy, M. A. I., Rahat, S. U., Das, M., Joy, M. S. I., Nahar, N., Pathak, A. (2020): An ultrasonic line follower robot to detect obstacles and edges for industrial and rescue operations. International Journal of Computer Applications, 176 (31), p. 31.

Vaishnavi, M. S. (2023): Obstacle Avoiding Bluetooth Robot Car using the Internet of things. Indian Journal of Data Communication and Networking (IJDCN), 3 (2), pp. 11–14.

Wahrini, R. (2023): Development of color-based object follower robot using Pixy 2 camera and Arduino to support robotics practice learning. Jurnal Edukasi Elektro, 7 (2), 161–168.

Alshammrei, S., Boubaker, S., Kolsi, L. (2022): Improved Dijkstra algorithm for mobile robot path planning and obstacle avoidance. Comput. Mater. Contin, 72 (3), 5939–5954.

Huang, J., Junginger, S., Liu, H., Thurow, K. (2023): Indoor positioning systems of mobile robots: A review. Robotics, 12 (2), 47.

Patil, N., Badole, Y., Sharma, P., Shrivas, P., Kumar, R., Nema, N. K. (2024): Using an Arduino Nano, an au-tonomo¬us vehicle system for speed control. International Re¬search Journal of Journal of Modernization in Engineer-ing Technology and Science 6 (3), 3532–3536. DOI:10.56726/IRJMETS50979

Idhom, M., Budijanto, A., Mufti, N., Alamsyah, M. R., Kristiawan, K. Y., Arinda, U. Y. (2022): Making a mobile educational robot with a practical approach using Ar¬duino. Nusantara Science and Technology Proceedings, 253–262.

Преземања

Објавено

2025-12-29

Како да се цитира

1.
Simona D, Katerina A, Bojana M, Andrej Cvetanovski, Medin A, Petar J, Damjan P. MESJ [Internet]. 2025 Dec. 29 [cited 2026 Feb. 28];43(2):93-100. Available from: https://mesj.ukim.edu.mk/journals/article/view/149