The Role of Digital Farming Tools on Crop Production among Small Scale Farmers in Ondo State, Nigeria
Authors
Department of Science Education (Agricultural Education Unit), Faculty of Education, Federal University Oye-Ekiti, Ekiti State (Nigeria)
Department of Vocational and Industrial Technology Education (Agricultural Education option), Bamidele Olumilua University of Education, Science and Technology, Ikere Ekiti, Ekiti State (Nigeria)
Department of Agricultural Science and Technology, Bamidele Olumilua University of Education, Science and Technology Ikere Ekiti (Nigeria)
Department of Vocational and Technical Education (Agricultural Education option), Ekiti State University, Ado Ekiti, Ekiti State (Nigeria)
Department of Vocational and Technical Education (Agricultural Education option), Ekiti State University, Ado Ekiti, Ekiti State (Nigeria)
Department of Soil Science, University of Ibadan, Oyo State (Nigeria)
Article Information
DOI: 10.51244/IJRSI.2026.1304000246
Subject Category: Agriculture
Volume/Issue: 13/4 | Page No: 2893-2904
Publication Timeline
Submitted: 2026-03-24
Accepted: 2026-04-02
Published: 2026-05-19
Abstract
Crop production is crucial to humanity as it provides food security which is the most fundamental for energy, growth, and health thereby preventing malnutrition, providing the essential raw materials for industries, generating employment of various kinds to supporting vast populations particularly in rural areas thus reducing poverty and hunger, driving economic growth and development by creating jobs, generating income and supporting related sectors while also playing a vital role in environmental sustainability. Sustainable farming practices protect soil, conserve water, enhance biodiversity, mitigate climate change and community well-being through resource management and rural development. In essence, agriculture underpins human survival, societal development, and economic stability, making it indispensable for global well-being. Therefore, it will be of great importance to include digital farming tools that use a data-driven approach to increase productivity, efficiency and sustainability in agriculture which is crucial for meeting the food demands of a growing population while minimizing environmental impact among small-scale farmers in Ondo State, Nigeria. This paper looks at the meaning of digital farming and its relevance in crop production, examples of digital farming tools, how small-scale farmers can be benefited using digital farm tools. It was suggested among others that small-scale farmers should be encouraged to start with clear goals and pilot farm before embarking on the use of digital farming tools, government should prioritize training and support for small- scale farmers through agricultural extension services or farmer networks because digital literacy can be a major barrier to its adoption, ensure reliable technical supports, establishment of farmer groups or digital platforms like WhatsApp groups or online forums to share experiences, learn best practices, and access timely information on weather, markets and agronomy.
Keywords
Digital farming tools, Crop production
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References
1. Adebayo, O. O., & Ogunleye, K. Y. (2021). Institutional barriers to smart agriculture in sub-Saharan Africa. African Journal of Science, Technology and Innovation, 13(2), 112–129. [Google Scholar] [Crossref]
2. Addom, B.K. (2021). Digitalization and Smallholder Agriculture. https:// d4ag. [Google Scholar] [Crossref]
3. Adding, A. (2021). Structure of a Digital Agriculture System and Agriculture Risk Due to Climate Change. Agriculture and Agricultural Procedia 1, 42-51. https://doi.org/10.1016/j.aaspro.2010.09.006 [Google Scholar] [Crossref]
4. Ajibare, A.Y., Ogunjobi, O.P., & Owolabi, M. (2025). Impact of Agricultural Education on the Productivity of Small-Scale Agriculture in Ekiti State, Nigeria. Nigerian Journal of Engineering, Technology, Science and Environment. 1(01). www. Njetse.dsust.edu.ng [Google Scholar] [Crossref]
5. Antle, J. & Basso, B. (2020). Digital Agriculture to Design Sustainable Agricultural System. Nature sustainability, 3(4), Article 4. https://www.nature.com/articles/541893-020-0510-0 [Google Scholar] [Crossref]
6. Bisht, O. I. Ayua, G. A. Bichi, S. S. Usman, I. A. & Lawal, F. K. (2022). Impact of Creative Teaching on Interest in Basic Science among Varied-ability Upper Basic Science Students in Makurdi, Nigeria. Umaru Musa Yaradua University Journal of Education. 11(1), 15-22. [Google Scholar] [Crossref]
7. Food and Agriculture Organisation of the United Nations (FAO) (2013). Smallholders and family farmers. http://openknowlege.FAO.org/handle/20500.14283/ar588e [Google Scholar] [Crossref]
8. Fountas, S. Espejo-Garcia, B. Kasimati, A. Mylonas, N. and Darra, N. (2020). Opportunities. IT Professional, 22(1), 24-28http://eeexplore.lee.org/abstract/document/8994135 [Google Scholar] [Crossref]
9. Narendra, V.N. Sahana, S. & Chaithrashree, J. (2019). Digital Agricuutuure. Bullentin of Environment, pharmacology and life sciences 8(6):164-170. Online ISSN 227-1808. http://www.bepls.com. [Google Scholar] [Crossref]
10. Ogunjobi, O.P and Owoseni, K.P. (2025). Effect of Technology-Enhanced Instructions [Google Scholar] [Crossref]
11. on Students’ Learning Outcome in Agricultural Science in Ekiti State Senior Secondary Schools. International Journal of Research and Scientific Innovation (IJRSI). Online E-Journal ISSN 2321-2705| DOI: 10.51244/IJRSI | XII (I) 178 [Google Scholar] [Crossref]
12. Ogunleye, K. Y., & Adegbite, O. (2022). Policy readiness for drone-based agriculture in Nigeria. Technological Forecasting and Social Change, 181, 121759. [Google Scholar] [Crossref]
13. Olufolaji, S. O. (2014). Human Capital Development and Sustainable Development: Evidence from Nigeria. Studia Universita BabebolyaiOeconomica. 67(1), 63-77. [Google Scholar] [Crossref]
14. Sabo, B. B. lsals, D. Chamo, A. M. and Rabiu M.A. (2017). Role of Smallholder Farmers in Nigeria’s Food Security. Scholarly Journal of Agricultural Science 7(1), 1-5.http://www.scholarly-journal.com/SJAS.ISSN227-71118. [Google Scholar] [Crossref]
15. Trendor, N. M.. Varas, S. & Zeng, M. (2019). Digital Technologies in Agriculture and Rural Area-Status Report. Rome. Licence:cc by nc-sa 3.0 igo. https://www.researchgate.net/publication/3440415000 . [Google Scholar] [Crossref]
16. Tsan, M., Totapally, S., Hailu, M. and Addom, B.K. (2019). The digitalisation of African Agriculture Report, 2018-2019. Wageningen: Technical Centre for Agricultural and Rural Cooperation ACP-EU(CTA) and Dalberg Advisers. [Google Scholar] [Crossref]
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