Automation and Robotics in Agriculture: The Emergence of Smart Farms

Authors

DOI:

https://doi.org/10.55938/wlp.v1i2.121

Keywords:

Intelligent Farming, Autonomous Robots, Agricultural Robotics, Robotic Harvesters, Autonomous Weed Control

Abstract

The article discusses Agriculture 4.0, a concept of intelligent farming, as well as important technology and applications. It emphasizes how crucial modern infrastructures, cloud computing, and automated machinery are to streamlining daily operations and figuring out input material requirements. This review paper explores the use of agricultural robotic systems in tasks like land preparation, sowing, planting, treatment, harvesting, yield estimation, and phenotyping. The challenges that ground robots encounter in agricultural environments are discussed, including the wide range of environmental factors, complex plant canopy systems, and biological differences between species. It examines at both possible future paths and current approaches. Additionally, it examines the most recent developments in precision agriculture's utilization of mobile robots, with an emphasis on technologies for soil, crop, and field monitoring. It includes case analysis and illustrates important robotic solutions, especially land-based robots. The analysis emphasizes how other agricultural operations are increasingly being automated, with a rising concentration on vision and cloud point identification. The integration of cloud computing with precision agriculture and intelligent farming techniques is covered in this study, along with how agriculture robots and automation systems can overcome computation, retention, and storage constraints.

References

1. Oliveira, L. F., Silva, M. F., & Moreira, A. P. (2020). Agricultural robotics: A state of the art survey. In Proceedings of the Robots in Human Life—Proceedings of the 23rd International Conference on Climbing and Walking Robots and the Support Technologies for Mobile Machines, CLAWAR (pp. 279-286).

2. Saleem, M. H., Potgieter, J., & Arif, K. M. (2021). Automation in agriculture by machine and deep learning techniques: A review of recent developments. Precision Agriculture, 22, 2053-2091.

3. Rahmadian, R., &Widyartono, M. (2020, October). Autonomous robotic in agriculture: a review. In 2020 third international conference on vocational education and electrical engineering (ICVEE) (pp. 1-6). IEEE.

4. Shahaas, A., Rithin, Nambiar, B., Dheeshith, C. P., Abhijith, K., & Gatti, R. R. (2023). State‐of‐the‐Art Review of Robotics in Crop Agriculture. Self‐Powered Cyber Physical Systems, 349-358.

5. Yépez-Ponce, D. F., Salcedo, J. V., Rosero-Montalvo, P. D., & Sanchis, J. (2023). Mobile robotics in smart farming: current trends and applications. Frontiers in Artificial Intelligence, 6.

6. McGlynn, S., & Walters, D. (2019). Agricultural Robots: Future Trends for Autonomous Farming. Int. J. Emerg. Technol. Innov, 6, 944-949.

7. Moysiadis, V., Tsolakis, N., Katikaridis, D., Sørensen, C. G., Pearson, S., & Bochtis, D. (2020). Mobile robotics in agricultural operations: A narrative review on planning aspects. Applied Sciences, 10(10), 3453.

8. Cheng, C., Fu, J., Su, H., & Ren, L. (2023). Recent advancements in agriculture robots: Benefits and challenges. Machines, 11(1), 48.

9. Siruvoru, V., & Vijay Kumar, N. (2020). Cloud Robotics in Agriculture Automation. New Trends in Computational Vision and Bio-inspired Computing: Selected works presented at the ICCVBIC 2018, Coimbatore, India, 1073-1086.

10. Marinoudi, V., Sørensen, C. G., Pearson, S., &Bochtis, D. (2019). Robotics and labour in agriculture. A context consideration. Biosystems Engineering, 184, 111-121.

11. Dash, S., Sarkar, S., Tripathy, H. P., Pattanaik, P., & Patnaik, S. (2021, December). Robotics in weed management: A new paradigm in agriculture. In 2021 International Conference on Electronic Information Technology and Smart Agriculture (ICEITSA) (pp. 561-564). IEEE.

12. Oliveira, L. F., Moreira, A. P., & Silva, M. F. (2021). Advances in agriculture robotics: A state-of-the-art review and challenges ahead. Robotics, 10(2), 52.

13. Lytridis, C., Kaburlasos, V. G., Pachidis, T., Manios, M., Vrochidou, E., Kalampokas, T., &Chatzistamatis, S. (2021). An overview of cooperative robotics in agriculture. Agronomy, 11(9), 1818.

14. Vougioukas, S. G. (2019). Agricultural robotics. Annual review of control, robotics, and autonomous systems, 2, 365-392.

15. Barnes, E., Morgan, G., Hake, K., Devine, J., Kurtz, R., Ibendahl, G., ... & Holt, G. (2021). Opportunities for robotic systems and automation in cotton production. AgriEngineering, 3(2), 339-362.

16. Paul, P., Ripu Ranjan Sinha, R. R. S., Aithal, P. S., Saavedra M, R., Aremu, P. S. B., &Mewada PhD, S. (2020). Agricultural robots: the applications of robotics in smart agriculture—towards more advanced agro informatics practice. Asian Review of Mechanical Engineering, 9(1), 38-44.

Published

2024-11-21

How to Cite

Pramanik, A., Bisht, K., & Thapliyal, S. (2024). Automation and Robotics in Agriculture: The Emergence of Smart Farms. Wisdom Leaf Press, 1(2), 109–113. https://doi.org/10.55938/wlp.v1i2.121

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