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Mobility and Sustainability: A Computational Model of African Pastoralists

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  • Takuto Sakamoto

Abstract

This article offers a simple computational model of mobile pastoralists. Employing an agent-based modeling (ABM) approach, the model explicitly simulates the movement patterns of pastoralists and computes the resultant natural resource access for a landscape that shows the typically unpredictable dynamics of African rangeland ecology. Extensive simulations reveal a striking level of efficiency in the exploitation of resource endowments that mobile pastoralists can achieve in otherwise inhospitable environments. The simulations also illuminate the serious welfare consequences of the disruption of pastoral mobility under tight land constraints. These quantitative results are consistent with the rich qualitative evidence from the empirical literature on African pastoralism. Moreover, the article reports on several sets of ¡®policy experiments¡¯ that evaluate the effect of rangeland interventions on the mobility and livelihoods of pastoralists. These endeavors will pave the way for empirically richer and more policy-relevant analyses of dryland pastoralism.

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  • Takuto Sakamoto, 2016. "Mobility and Sustainability: A Computational Model of African Pastoralists," Journal of Management and Sustainability, Canadian Center of Science and Education, vol. 6(1), pages 59-75, March.
  • Handle: RePEc:ibn:jmsjnl:v:6:y:2016:i:1:p:59-75
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    1. Daniel Urban & Michael Roberts & Wolfram Schlenker & David Lobell, 2012. "Projected temperature changes indicate significant increase in interannual variability of U.S. maize yields," Climatic Change, Springer, vol. 112(2), pages 525-533, May.
    2. Russell Toth, 2015. "Traps and Thresholds in Pastoralist Mobility," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 97(1), pages 315-332.
    3. Golecha, Rajdeep & Gan, Jianbang, 2016. "Effects of corn stover year-to-year supply variability and market structure on biomass utilization and cost," Renewable and Sustainable Energy Reviews, Elsevier, vol. 57(C), pages 34-44.
    4. Thompson, Wyatt & Meyer, Seth & Westhoff, Pat, 2009. "How does petroleum price and corn yield volatility affect ethanol markets with and without an ethanol use mandate?," Energy Policy, Elsevier, vol. 37(2), pages 745-749, February.
    5. Anonymous, 1963. "Food and Agriculture Organization," International Organization, Cambridge University Press, vol. 17(1), pages 261-266, January.
    6. Moritz, Mark & Hamilton, Ian M. & Yoak, Andrew J. & Scholte, Paul & Cronley, Jeff & Maddock, Paul & Pi, Hongyang, 2015. "Simple movement rules result in ideal free distribution of mobile pastoralists," Ecological Modelling, Elsevier, vol. 305(C), pages 54-63.
    7. Kahsay, Goytom Abraha & Hansen, Lars Gårn, 2016. "The effect of climate change and adaptation policy on agricultural production in Eastern Africa," Ecological Economics, Elsevier, vol. 121(C), pages 54-64.
    8. Deepak K. Ray & James S. Gerber & Graham K. MacDonald & Paul C. West, 2015. "Climate variation explains a third of global crop yield variability," Nature Communications, Nature, vol. 6(1), pages 1-9, May.
    9. Thornton, P.K. & BurnSilver, S.B. & Boone, R.B. & Galvin, K.A., 2006. "Modelling the impacts of group ranch subdivision on agro-pastoral households in Kajiado, Kenya," Agricultural Systems, Elsevier, vol. 87(3), pages 331-356, March.
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    More about this item

    Keywords

    Africa; agent-based modeling; arid and semi-arid lands; mobility; pastoralism;
    All these keywords.

    JEL classification:

    • R00 - Urban, Rural, Regional, Real Estate, and Transportation Economics - - General - - - General
    • Z0 - Other Special Topics - - General

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