Analysis Of The Total Operating Time Of The DJI Agras T30 Drone In Field Treatment
Alimov Akbar Muxammatovich , Tashkent State Transport University, Department of Aviation Engineering — part-time Senior Lecturer (0.5 position), UzbekistanAbstract
This article examines the efficiency of a fine dispersion of fertilizer across agricultural lands technology by means of aircrafts. As a solution to this problem, the use of ultralight aircraft such as drones is considered appropriate.
Recently, according to conducted various field studies, air drones spraying has become an innovative approach. Particularly, the main research object of this article is to analyz the technical capabilities of the DJI Agras T30 drone and to consider the total time it spends treating a field. The impact of agrotechnical necessities on flight performance, in other words the increase of used spray volume and flight time, is also calculated in this paper.
The analysis of the calculation results shows that the actual shape of the field (its edges and corners), speed of wind, and flight directions can significantly affect the flight time. Therefore, to ensure that theoretical calculations more accurately reflect real-world conditions, it is recommended to introduce a correction coefficient into the formulas.
Keywords
DJI Agras T30 drone, main working time, auxiliary time
References
Krishna, K. R. Agricultural Drones: A Peaceful Pursuit. Routledge.
Balasubramanian, S., Natarajan, G., Chelliah, P. R. (eds.) Intelligent Robots and Drones for Precision Agriculture. Springer, 2024.
Gupta, S. K., Kumar, M., Nayyar, A., Mahajan, S. Unmanned Aircraft Systems. Wiley, 2024–2025. Wiley Online Library.
Gupta, O. Precision Agriculture with Drones: A New Age of Farming. Akinik Publications, 2025. akinik.com.
Gacovski, Z. (ed.) Unmanned Aerial Vehicles (UAVs) and Drones. wakefieldbooks.com
Rejeb, A., Abdollahi, A., Rejeb, K., Treiblmaier, H. (2022). Drones in Agriculture: A Review and Bibliometric Analysis. ADS+1
Drones in Vegetable Crops: A Systematic Literature Review (2024). ScienceDirect+1
Plant Disease Detection Using Drones in Precision Agriculture (2023). SpringerLink
A Review of Drone Technology and Operation Processes in Agricultural Crop Spraying. MDPI.
Unmanned Aerial Vehicles (UAVs) in Modern Agriculture, in Advances in Environmental Engineering and Green Technologies Handbook, 2023. OUCI
Arza García, A., Burgess, J. Drones in the Sky: Towards a More Sustainable Agriculture. MDPI, 2023.
Souvanhnakhoomman, K. (2024). Review on Application of Drones in Spraying Pesticides and Fertilizers.
Lebedev, S. (2025). How Agriculture in Russia Uses UAVs. u-f.ru.
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Engineering and Technology
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