Research Article

Design and Vision-Based Control of a Low-Cost SCARA Robot

Volume: 12 Number: 3 September 30, 2025
EN

Design and Vision-Based Control of a Low-Cost SCARA Robot

Abstract

SCARA robots are widely used in industrial automation due to their high precision and speed, particularly in pick-and-place operations. In addition to conventional programming approaches, alternative vision-based control methods have gained interest to enhance flexibility and efficiency in robotic applications. This study presents the design and implementation of a Position-Based Visual Servoing (PBVS) for the SCARA robot system capable of detecting and manipulating objects in real-time. The proposed system consists of a fixed overhead camera, a SCARA robot, and Python-based control software. The software integrates image processing algorithms, kinematic calculations, and motor control, enabling the robot to autonomously identify objects, compute their positions, and execute pick and place tasks. To enhance object detection accuracy, Kuwahara filtering, Canny edge detection, morphological transformations, and connected component analysis were applied. Experimental results demonstrated that the combination of Kuwahara filtering and Canny edge detection achieved the lowest MSE error (8.45%), ensuring precise object localization. Furthermore, inverse kinematics was employed to generate accurate joint movements, allowing smooth and reliable grasping operations. The system was tested through 100 pick-and-place trials, achieving a 100% grasping success rate when Kuwahara filtering was applied. The experimental findings confirm that vision-based control significantly improves SCARA robot performance, making it suitable for automated assembly, material handling, and quality control applications.

Keywords

References

  1. 1. Shariatee M, Akbarzadeh A, Mousavi A, Alimardani S. Design of an economical SCARA robot for industrial applications. In: Proceedings of the 2014 Second RSI/ISM International Conference on Robotics and Mechatronics (ICRoM); 2014 Oct 15-17; Tehran, Iran. IEEE; 2014. p. 534-539. doi:10.1109/ICRoM.2014.6990957.
  2. 2. Priya PV, Suresh J. Integration of SCARA Robot for Pick and Place Application using PLC. In: Proceedings of the ICCAP; 2021 Dec 7. EAI; 2021. doi:10.4108/eai.7-12-2021.2314569.
  3. 3. Vagaš M. The Assembly of Electric Socket at Automated Workplace with SCARA Robot. Applied Mechanics and Materials. 2016;844:25–30. doi:10.4028/www.scientific.net/amm.844.25.
  4. 4. Kolanur CB, Tanvashi S, Asuti P, et al. Inspection of Silk Cocoons using 3-DOF SCARA Robot for Quality Control. Research Square. 2024 Mar 26. doi:10.21203/rs.3.rs-4149336/v1.
  5. 5. Kapusi TP, Erdei TI, Husi G, Hajdu A. Application of Deep Learning in the Deployment of an Industrial SCARA Machine for Real-Time Object Detection. Robotics. 2022;11(4):69. doi:10.3390/robotics11040069.
  6. 6. Pires JN, Azar AS, Nogueira F, Zhu CY, Branco R, Tankova T. The role of robotics in additive manufacturing: review of the AM processes and introduction of an intelligent system. Ind Robot. 2022;49(2):311–31. doi:10.1108/IR-06-2021-0110.
  7. 7. Febrianto R. Design and development of a 5-DOF SCARA robot arm for robotics education in a STEM laboratory. Indones J Comput Sci. 2024;13(5):7198–217. doi:10.33022/ijcs.v13i5.4373.
  8. 8. He Y, Li X, Xu Z, Zhou X, Li S. Collaboration of multiple SCARA robots with guaranteed safety using recurrent neural networks. Neurocomputing. 2021;438:245-259. doi:10.1016/j. neucom.2021.05.049.

Details

Primary Language

English

Subjects

Control Engineering, Mechatronics and Robotics (Other)

Journal Section

Research Article

Publication Date

September 30, 2025

Submission Date

February 19, 2025

Acceptance Date

June 19, 2025

Published in Issue

Year 2025 Volume: 12 Number: 3

APA
Adar, N. G., & Özden, M. (2025). Design and Vision-Based Control of a Low-Cost SCARA Robot. Hittite Journal of Science and Engineering, 12(3), 111-120. https://doi.org/10.17350/HJSE19030000357
AMA
1.Adar NG, Özden M. Design and Vision-Based Control of a Low-Cost SCARA Robot. Hittite J Sci Eng. 2025;12(3):111-120. doi:10.17350/HJSE19030000357
Chicago
Adar, Nurettin Gökhan, and Mustafa Özden. 2025. “Design and Vision-Based Control of a Low-Cost SCARA Robot”. Hittite Journal of Science and Engineering 12 (3): 111-20. https://doi.org/10.17350/HJSE19030000357.
EndNote
Adar NG, Özden M (September 1, 2025) Design and Vision-Based Control of a Low-Cost SCARA Robot. Hittite Journal of Science and Engineering 12 3 111–120.
IEEE
[1]N. G. Adar and M. Özden, “Design and Vision-Based Control of a Low-Cost SCARA Robot”, Hittite J Sci Eng, vol. 12, no. 3, pp. 111–120, Sept. 2025, doi: 10.17350/HJSE19030000357.
ISNAD
Adar, Nurettin Gökhan - Özden, Mustafa. “Design and Vision-Based Control of a Low-Cost SCARA Robot”. Hittite Journal of Science and Engineering 12/3 (September 1, 2025): 111-120. https://doi.org/10.17350/HJSE19030000357.
JAMA
1.Adar NG, Özden M. Design and Vision-Based Control of a Low-Cost SCARA Robot. Hittite J Sci Eng. 2025;12:111–120.
MLA
Adar, Nurettin Gökhan, and Mustafa Özden. “Design and Vision-Based Control of a Low-Cost SCARA Robot”. Hittite Journal of Science and Engineering, vol. 12, no. 3, Sept. 2025, pp. 111-20, doi:10.17350/HJSE19030000357.
Vancouver
1.Nurettin Gökhan Adar, Mustafa Özden. Design and Vision-Based Control of a Low-Cost SCARA Robot. Hittite J Sci Eng. 2025 Sep. 1;12(3):111-20. doi:10.17350/HJSE19030000357

Hittite Journal of Science and Engineering is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License (CC BY NC).