2025, Vol. 12, No. 3. - go to content...
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DOI: 10.15862/01INOR325 (https://doi.org/10.15862/01INOR325)
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Bondar I.L., Logachev M.S. Features of digital transformation of private farming. Russian journal of resources, conservation and recycling. 2025; 12(3). Available at: https://resources.today/PDF/01INOR325.pdf (in Russian). DOI: 10.15862/01INOR325
Features of digital transformation of private farming
Bondar Ilya Leonidovich
Moscow Polytechnic University, Moscow, Russia
E-mail: ilya-bondar-2003@mail.ru
ORCID: https://orcid.org/0009-0007-7836-1702
Logachev Maxim Sergeevich
Moscow Polytechnic University, Moscow, Russia
E-mail: logachevmaxim@gmail.com
ORCID: https://orcid.org/0000-0002-0425-5014
RSCI: https://elibrary.ru/author_profile.asp?id=774123
SCOPUS: https://www.scopus.com/authid/detail.url?authorId=57218769441
Abstract. The article defines the problem of the lack of uniform and systematic approaches to growing crops on individual land plots. A person’s lack of professional knowledge in the field of agricultural technologies and the presence of a lot of reference information form the risks of a negative impact on the natural environment. Existing hardware and software systems for efficient crop production are intended for use in farms or large agro-industrial complexes. The creation of a digital system for personal subsidiary plots allows you to ensure high yields in a small area, while maintaining a careful attitude to natural resources. The use of systems analysis, object-oriented design and graphical methods allowed the authors to develop a digital system that forms recommendations for effective plant cultivation, as well as monitor the land plot. The article presents the software and hardware architecture of the system, providing uninterrupted operation and accessibility to the functionality of different categories of users. The authors highlighted the main characteristics of such users and the opportunities available to them, as well as a description of typical scenarios for working in a digital system. Depending on the user’s category, he can manage the resources of the digital system, view reference information, obtain current data on the state of the land plot and the quality of the work carried out, individual recommendations for the placement of plants (taking into account the neighborhood, principles of crop rotation, shading and other factors) or receive an automatically generated calendar of recommended works based on the current state of the site and the work carried out. To visualize scripts, the article shows fragments of the prototype user interface. The digital system is flexible and customizable. The authors concluded that the principles of the digital system meet the requirements of food and environmental safety.
Keywords: sustainable agriculture; agricultural products; crop production; management; digitalization; productivity; ecology

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