THE RELEVANCE OF DEVELOPING AN INNOVATIVE SYSTEM FOR REMOTE MONITORING AND MAPPING OF AGRICULTURAL LANDS
DOI:
https://doi.org/10.51699/9dtdmw25Keywords:
Land Cadastre, Land Resource Management, Land Fund, Rational Land Use, Agricultural Lands, Organization of Agricultural Land Use, Agricultural ProducersAbstract
This study emphasizes that creating maps of agricultural lands through remote sensing and innovative methods is not merely a visual tool, but also a powerful instrument for complex data analysis, forecasting, and decision-making, and may serve as a foundation for sustainable development. The study substantiates proposals for solving land-use planning problems through the preparation of various maps based on satellite imagery. It also examines the main objectives of agriculture, including restoring an effective agricultural land management system, reviving land-use planning as a core management function, establishing an efficient monitoring system for assessing land conditions and qualitative changes in the land fund, financially supporting agricultural producers, ensuring the rational use of designated land parcels, and increasing the investment attractiveness of agriculture.References
[1] Sh. Sh. Tukhtamishev, S. A. Suyunov, A. A. Mirzayev, O. A. Urakov, and U. A. Berdikulov, “Analysis of the quality of measurements of permanent base stations (UZPOS) in the territory of Samarkand,” E3S Web Conf., vol. 498, p. 02020, 2024, doi: 10.1051/e3sconf/202449802020.
[2] S. Abdurakhmonov, S. Ochilov, S. Tukhtamishev, O. Urokov, U. Berdikulov, and G. Azzamov, “Cartographic modeling of demographic processes using remote sensing data,” E3S Web Conf., vol. 497, p. 02030, 2024.
[3] I. L. Akramov, Improved Method of Monitoring Agricultural Land Based on Digital Technology. Tashkent, 2025.
[4] R. A. Turayev, G. T. Parpiyev, and G. M. Khojiev, Methodology for Monitoring Agricultural Land. Tashkent: Zilol Spring Publishing House, 2020.
[5] A. S. Suyunov, A. A. Mirzayev, O. A. Urakov, and S. A. Suyunov, “Field studies of electronic total stations in a special reference satellite geodetic basis,” in Proc. 2nd Int. Conf. Computer Applications for Management and Sustainable Development of Production and Industry (CMSD-II), 2023, pp. 208–213, doi: 10.1117/12.2669919.
[6] R. Q. Oymatov, “Issues of studying the characteristics of the Earth using remote sensing methods,” in Proc. Republican Scientific and Practical Seminar on Sustainable Management of Land Resources in the Context of Climate Change, Tashkent, Apr. 21, 2017, pp. 279–280.
[7] G. Sh. Shukurov, Sh. Sh. Tukhtamishev, and F. H. Fazilov, “Noise fighting and noise mapping in urban planning,” Int. Eng. J. Res. Dev., vol. 5, 2020.
[8] A. S. Suyunov and Sh. Sh. Tukhtamishev, “Investigation of noise distribution on the basis of conditional symbols and its description,” 2021, pp. 81–85.
[9] A. Suyunov, S. Tukhtamishev, S. Suyunov, S. Manoev, and S. Samankulov, “Innovative solutions in creating noise maps in cities,” E3S Web Conf., vol. 463, p. 02007, 2023.
[10] S. Tukhtamishev, A. Mirzayev, O. Urokov, and D. Hamdamova, “The application of electronic tachymeters in the measurement of errors in angular and nonlinear modes,” in AIP Conf. Proc., vol. 3243, no. 1, 2024.
[11] R. K. Oymatov, “Cartographic sources used in the creation of agricultural electronic cards,” Int. J. Innov. Eng. Res. Technol., vol. 7, no. 7, pp. 142–147, Jul. 2020.
[12] E. V. Ponkina, Geoinformation Technologies in Agricultural Production. Barnaul, 2005.
[13] R. Q. Oymatov, A. Inamov, and J. Lapasov, “Automatic deciphering of space images for crop land using modern technologies,” in Proc. Republican Scientific and Practical Conf. “Geography: Innovation Ideas, Technologies and Projects”, Mar. 28–29, 2012, pp. 231–232.
[14] R. Q. Oymatov and M. S. Akbarov, “Urgent problems of the formation of agricultural maps in Uzbekistan,” in Proc. Scientific Conf. ‘Experiences and Prospects of Land Resource Use and Settlement’, Tashkent, Feb. 1–4, 2010, pp. 198–200.
[15] A. A. Mirzaev, M. S. Khamdamov, and D. Mikheev, “Principles of creating a standard geodetic network in Uzbekistan for metrological support of drainage systems,” Irrigation and Reclamation, no. 4(18), pp. 41–43, 2019.