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Use of high-technology tools in monitoring agricultural lands and crops, and in the implementation of agrotechnical measures

Field of Science:Agricultural and Biological Sciences (miscellaneous)Agronomy and Crop Science
National field of science (HAC):03.00.10 — Ecology03.00.01 — Biochemistry02.00.16 — Processes and apparatuses of chemical technology and food production02.00.18 — Technology of processing and storage of fishery products03.00.07 — Plant physiology and biochemistry03.00.03 — Molecular biology. Molecular genetics. Molecular biotechnology03.00.02 — Biophysics and radiobiology03.00.04 — Microbiology and virology03.00.05 — Botany03.00.06 — Zoology03.00.08 — Human and animal physiology03.00.09 — General genetics03.00.13 — Soil science03.00.15 — Ichthyology03.00.16 — Hydrobiology05.07.02 — Operation, restoration and repair of agricultural and land-reclamation machinery06.03.01 — Forest plantations. Breeding, seed production and urban greening. Agroforestry and establishment of protective forests06.01.01 — General crop farming. Cotton growing06.01.02 — Land reclamation and irrigated farming06.01.03 — Agro-soil science and agrophysics06.01.04 — Agrochemistry06.01.05 — Plant breeding and seed production06.01.06 — Vegetable growing06.01.07 — Fruit growing and viticulture06.01.08 — Crop science06.01.09 — Plant protection06.01.10 — Land management, cadastre and land monitoring06.01.11 — Storage and processing of agricultural products06.02.02 — Feeding of farm animals and feed preparation technology06.02.03 — Special animal husbandry. Livestock production technology06.02.04 — Sericulture06.03.02 — Forest inventory and forest mensuration. Forest science and silviculture. Forest fires and their control06.03.03 — Introduction of medicinal plants, cultivation technology and agro-pharmaecology02.00.17 — Technologies and biotechnologies for processing, storage and refining of agricultural and food products03.00.11 — Histology, cytology and cell biology03.00.12 — Biotechnology03.00.14 — Genomics, proteomics and bioinformatics05.05.07 — Electrical technologies and electrical equipment in agriculture05.07.01 — Agricultural and land-reclamation machines. Mechanization of agricultural and land-reclamation works06.02.01 — Breeding, reproduction, selection and genetics of farm animals. Karakul sheep breeding
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ARTICLE ANNOTATION

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The article highlights the issues of increasing agricultural efficiency through the implementation of modern digital and information technologies. In particular, it analyzes the potential of applying artificial intelligence, drones, robots, and autopilot systems in the agricultural sector. It is emphasized that the implementation of the “Smart agriculture” system enables the rational use of land and water resources, reduces labor and economic costs, and improves crop yield and product quality. Based on the Chinese experience, the economic efficiency of using agrodrones, automated irrigation systems, and autopilot-based machinery is substantiated. According to the research results, the introduction of smart technologies can reduce labor costs by up to 60%, water and fertilizer consumption by 25% and 3%, respectively, while increasing yield by 16%. The article also presents proposals and recommendations for developing a “smart farming” system under the conditions of Uzbekistan.

AUTHORS

Science ID: DXR-0825-0006

Science ID: FBX-0925-0045

Tags

# эффективность# efficiency# agriculture# қишлоқ хўжалиги# сельское хозяйство# самарадорлик# artificial intelligence# искусственный интеллект# сунъий интеллект# digital technologies# цифровые технологии# рақамли технологиялар# drones# дроны# дронлар# автопилот тизими# смарт суғориш# система автопилота# умное орошение# autopilot system# smart irrigation

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References

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