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A System Dynamics Model for Subsistence Farmers' Food Security Resilience in Sub-Saharan Africa

Author

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  • Benedict Oyo

    (Department of Informatics, Tshwane University of Technology, Pretoria, South Africa)

  • Billy Mathias Kalema

    (Department of Informatics, Tshwane University of Technology, Pretoria, South Africa)

Abstract

Food security at subsistence farmers' level in sub-Saharan Africa has become an issue of concern due to increasing vulnerability caused by a number of factors such as: changing climate, resource scarcity (e.g. land and inputs), environmental degradation (e.g. declining soil fertility, deforestation, and surface water eutrophication), market failures and weak public/donor support initiatives. In light of these challenges, farmers must be prepared to survive by self-provisioning. To pursue the fastest and most practical route to improved food security, focus should be on resilience based initiatives at household and community levels. In this paper, the authors investigate the factors that have enabled subsistence farmers to succeed despite the previous shocks and stresses, and develop a system dynamics model for sustainable food security based on initiatives exclusive to the farmers. The model is used to examine the question: how can innovative subsistence farmers engage in better livelihood and market orientated production irrespective of external public or donor support?

Suggested Citation

  • Benedict Oyo & Billy Mathias Kalema, 2016. "A System Dynamics Model for Subsistence Farmers' Food Security Resilience in Sub-Saharan Africa," International Journal of System Dynamics Applications (IJSDA), IGI Global, vol. 5(1), pages 17-30, January.
  • Handle: RePEc:igg:jsda00:v:5:y:2016:i:1:p:17-30
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    Cited by:

    1. Balkan, Büsra Atamer & Lindqvist, Andreas Nicolaidis & Odoemena, Kelechi & Lamb, Robert & Tiongco, Monique Ann & Gupta, Stueti & Peteru, Arpitha & Menendez III, Hector Manuel, 2021. "Understanding the Impact of COVID-19 on Agriculture and Food Supply Chains: System Dynamics Modeling for the Resilience of Smallholder Farmers," International Journal on Food System Dynamics, International Center for Management, Communication, and Research, vol. 12(03), September.

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