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Farmer-to-farmer digital network as a strategy to strengthen agricultural performance in Kenya: A research note on ‘Wefarm’ platform

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  • Omulo, Godfrey
  • Kumeh, Eric Mensah

Abstract

The potential to utitilize mobile phone innovations in providing customized agricultural information and services to improve smallholder farmers’ performance in sub-Saharan Africa (SSA) remains largely untapped. This is at the backdrop of the increasing emergence and adoption of ICT services as a means of relaying agricultural information to small-scale farmers and extension workers. One such technology is ‘Wefarm’ in Kenya, an SMS-based knowledge-sharing platform that enables farmers to connect with their peers and exchange knowledge about their production systems. Even though targeted to improve farmers’ access to information related to agricultural production, marketing and financial services, the extent to which these goals are achieved has not been evaluated. A pathway to improve technology adoption is by proving that the technology can enable farmers to attain their livelihood objectives. This short research note, therefore, identifies critical knowledge gaps for which evidence is required to inform policy and practice to enable stakeholders to harness the potential of ICT based innovations offered for agricultural development in SSA.

Suggested Citation

  • Omulo, Godfrey & Kumeh, Eric Mensah, 2020. "Farmer-to-farmer digital network as a strategy to strengthen agricultural performance in Kenya: A research note on ‘Wefarm’ platform," Technological Forecasting and Social Change, Elsevier, vol. 158(C).
  • Handle: RePEc:eee:tefoso:v:158:y:2020:i:c:s004016252030946x
    DOI: 10.1016/j.techfore.2020.120120
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    1. Patience B. Rwamigisa & Regina Birner & Margaret N. Mangheni & Arseni Semana, 2018. "How to promote institutional reforms in the agricultural sector? A case study of Uganda's National Agricultural Advisory Services (NAADS)," Development Policy Review, Overseas Development Institute, vol. 36(5), pages 607-627, September.
    2. Aker, Jenny C. & Ksoll, Christopher, 2016. "Can mobile phones improve agricultural outcomes? Evidence from a randomized experiment in Niger," Food Policy, Elsevier, vol. 60(C), pages 44-51.
    3. Arun Agrawal, 1995. "Dismantling the Divide Between Indigenous and Scientific Knowledge," Development and Change, International Institute of Social Studies, vol. 26(3), pages 413-439, July.
    4. Eduardo Nakasone & Maximo Torero, 2016. "A text message away: ICTs as a tool to improve food security," Agricultural Economics, International Association of Agricultural Economists, vol. 47(S1), pages 49-59, November.
    5. Jenny C. Aker & Isaac M. Mbiti, 2010. "Mobile Phones and Economic Development in Africa," Journal of Economic Perspectives, American Economic Association, vol. 24(3), pages 207-232, Summer.
    6. Kabbiri, Ronald & Dora, Manoj & Kumar, Vikas & Elepu, Gabriel & Gellynck, Xavier, 2018. "Mobile phone adoption in agri-food sector: Are farmers in Sub-Saharan Africa connected?," Technological Forecasting and Social Change, Elsevier, vol. 131(C), pages 253-261.
    7. Simplice A. Asongu, 2018. "Conditional Determinants of Mobile Phones Penetration and Mobile Banking in Sub-Saharan Africa," Journal of the Knowledge Economy, Springer;Portland International Center for Management of Engineering and Technology (PICMET), vol. 9(1), pages 81-135, March.
    8. Tadesse, Getaw & Bahiigwa, Godfrey, 2015. "Mobile Phones and Farmers’ Marketing Decisions in Ethiopia," World Development, Elsevier, vol. 68(C), pages 296-307.
    9. Martyn Warren, 2002. "Digital divides and the adoption of information and communication technologies in the UK farm sector," International Journal of Information Technology and Management, Inderscience Enterprises Ltd, vol. 1(4), pages 385-405.
    10. Clarkson, Graham & Garforth, Chris & Dorward, Peter & Mose, George & Barahona, Carlos & Areal, Francisco & Dove, MacKenzie, 2018. "Can the TV makeover format of edutainment lead to widespread changes in farmer behaviour and influence innovation systems? Shamba Shape Up in Kenya," Land Use Policy, Elsevier, vol. 76(C), pages 338-351.
    11. Surabhi Mittal & Sanjay Gandhi & Gaurav Tripathi, "undated". "Socio-Economic Impact of Mobile Phones on Indian Agriculture," Indian Council for Research on International Economic Relations, New Delhi Working Papers 246, Indian Council for Research on International Economic Relations, New Delhi, India.
    12. Uwe Deichmann & Aparajita Goyal & Deepak Mishra, 2016. "Will digital technologies transform agriculture in developing countries?," Agricultural Economics, International Association of Agricultural Economists, vol. 47(S1), pages 21-33, November.
    13. Daum, Thomas & Buchwald, Hannes & Gerlicher, Ansgar & Birner, Regina, 2018. "Using A Smartphone App To Collect Data On Smallholder Farming Systems In Zambia," 58th Annual Conference, Kiel, Germany, September 12-14, 2018 275839, German Association of Agricultural Economists (GEWISOLA).
    14. Joyous S. Tata & Paul E. McNamara, 2016. "Social Factors That Influence Use of ICT in Agricultural Extension in Southern Africa," Agriculture, MDPI, vol. 6(2), pages 1-10, April.
    15. Kiiza, Barnabas & Pederson, Glenn, 2012. "ICT-based market information and adoption of agricultural seed technologies: Insights from Uganda," Telecommunications Policy, Elsevier, vol. 36(4), pages 253-259.
    16. Yigezu, Yigezu Atnafe & Mugera, Amin & El-Shater, Tamer & Aw-Hassan, Aden & Piggin, Colin & Haddad, Atef & Khalil, Yaseen & Loss, Stephen, 2018. "Enhancing adoption of agricultural technologies requiring high initial investment among smallholders," Technological Forecasting and Social Change, Elsevier, vol. 134(C), pages 199-206.
    17. Shawn A Cole & A Nilesh Fernando, 2021. "‘Mobile’izing Agricultural Advice Technology Adoption Diffusion and Sustainability [Dial “a” for agriculture: using ICTs for agricultural extension in development countries]," The Economic Journal, Royal Economic Society, vol. 131(633), pages 192-219.
    18. Nadezda R. Amaya Urquieta & Jeffrey Alwang, 2012. "Women rule: potato markets, cellular phones and access to information in the Bolivian highlands," Agricultural Economics, International Association of Agricultural Economists, vol. 43(4), pages 405-415, July.
    19. Camacho, Adriana & Conover, Emily, 2019. "The impact of receiving SMS price and weather information on small scale farmers in Colombia," World Development, Elsevier, vol. 123(C), pages 1-1.
    20. Richard Duncombe, 2016. "Mobile Phones for Agricultural and Rural Development: A Literature Review and Suggestions for Future Research," The European Journal of Development Research, Palgrave Macmillan;European Association of Development Research and Training Institutes (EADI), vol. 28(2), pages 213-235, April.
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