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The Impact of Rural Electrification: Challenges and Ways Forward

Author

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  • Maximo Torero

Abstract

Rigorous impact evaluation that includes appropriately selected control groups must be a part of rural electrification program designs. Budgeting evaluation activities and engaging with evaluators at an early stage improves to likelihood of having a high quality evaluation design; plus, if deviations occur after the design stage, the evaluators are better prepared to adjust the design so that the impact results remain informative to policy makers and future program designers. Another takeaway is to use unified framework to specify the expected outcomes and the plausible sizes of impacts. If done at the beginning of the program, this will provide context to the kind of discussion that policy makers should engage in (e.g. if they should focus on health benefits or the potential to diffuse information campaigns to rural households). These points focus mostly on internal validity, but we also need to focus on external validity as well. Large scale rural electrification programs will provide an opportunity to test if the results from small scale impact evaluations translate to other settings. Something we have not stressed so far but that is important to keep in mind are the complementarities in the provision of different type of infrastructure. Large projects can provide an opportunity to explore complementarities with other infrastructure programs, such as mobile telephony, road access, and improved water and sanitation access. They can shed light on what are the most welfare-enhancing policy options when deciding what types of infrastructure to provide in rural areas, and especially to poor rural households. Finally, we reiterate the need to use an objective function that casts a wider net when deciding where to place electrification programs. Focusing solely on cost minimization can result in missed opportunities. When deciding where to deploy the electric grid in rural areas it is imperative to take into account the potential profits, specifically the agricultural potential of these areas. By using the isoprofit and cost minimization framework described, rural electrification programs have the opportunity to reach more poor households and have larger impacts in the lives of the rural poor by providing new opportunities and enhancing the synergies between the agricultural and non-agricultural sector. JEL Classification: O13, O38, Q56.

Suggested Citation

  • Maximo Torero, 2015. "The Impact of Rural Electrification: Challenges and Ways Forward," Revue d’économie du développement, De Boeck Université, vol. 23(HS), pages 49-75.
  • Handle: RePEc:cai:edddbu:edd_hs03_0049
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    Citations

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    Cited by:

    1. Antoine Boche & Clément Foucher & Luiz Fernando Lavado Villa, 2022. "Understanding Microgrid Sustainability: A Systemic and Comprehensive Review," Energies, MDPI, vol. 15(8), pages 1-29, April.
    2. Miguel H. Fernandez-Fuentes & Andrea A. Eras-Almeida & Miguel A. Egido-Aguilera, 2021. "Characterization of Technological Innovations in Photovoltaic Rural Electrification, Based on the Experiences of Bolivia, Peru, and Argentina: Third Generation Solar Home Systems," Sustainability, MDPI, vol. 13(6), pages 1-23, March.
    3. Gaël Giraud & Stéphanie LEYRONAS & Dominique ROJAT & Frédéric MAUREL, 2017. "Toward an Analytical Framework for the Governance of Natural Resources: The Case of Groundwater," Working Paper 7d303a24-e115-4f86-baa7-c, Agence française de développement.
    4. Kaihula P. Bishagazi, 2021. "Sustainable Local Economic Development in Tanzania: Exploring Economic Challenges in Growing the Economy," Journal of Public Administration and Governance, Macrothink Institute, vol. 11(2), pages 210228-2102, December.
    5. Mertzanis, Charilaos & Garas, Samy & Abdel-Maksoud, Ahmed, 2020. "Integrity of financial information and firms' access to energy in developing countries," Energy Economics, Elsevier, vol. 92(C).
    6. Sarah BOTTON & Sébastien HARDY & Franck POUPEAU, 2017. "Water from the heights, water from the grassroots: the Governance of common dynamics and public services in La Paz-El Alto," Working Paper af116c25-9d27-46bd-bbbc-3, Agence française de développement.
    7. Rathi, Sambhu Singh & Vermaak, Claire, 2018. "Rural electrification, gender and the labor market: A cross-country study of India and South Africa," World Development, Elsevier, vol. 109(C), pages 346-359.
    8. Emodi, Nnaemeka Vincent & Haruna, Emmanuel Umoru & Abdu, Nizam & Aldana Morataya, Sergio David & Dioha, Michael O. & Abraham-Dukuma, Magnus C., 2022. "Urban and rural household energy transition in Sub-Saharan Africa: Does spatial heterogeneity reveal the direction of the transition?," Energy Policy, Elsevier, vol. 168(C).
    9. Andante Hadi Pandyaswargo & Mengyi Ruan & Eiei Htwe & Motoshi Hiratsuka & Alan Dwi Wibowo & Yuji Nagai & Hiroshi Onoda, 2020. "Estimating the Energy Demand and Growth in Off-Grid Villages: Case Studies from Myanmar, Indonesia, and Laos," Energies, MDPI, vol. 13(20), pages 1-22, October.
    10. Raul Jimenez Mori, 2020. "Development Effects of Electrification: A Meta-Analysis for Income, Labor and Educational Outcomes," Documentos de Trabajo 18096, The Latin American and Caribbean Economic Association (LACEA).
    11. Anton Eberhard, 2017. "Powering Africa: Facing the Financing and Reform Challenges," Working Paper 808f2af7-2cf9-4bca-8b3f-3, Agence française de développement.
    12. Holstenkamp, Lars, 2019. "What do we know about cooperative sustainable electrification in the global South? A synthesis of the literature and refined social-ecological systems framework," Renewable and Sustainable Energy Reviews, Elsevier, vol. 109(C), pages 307-320.
    13. Pereira, Géssica Michelle dos Santos & Weigert, Gabriela Rosalee & Macedo, Pablo Lopes & Silva, Kiane Alves e & Segura Salas, Cresencio Silvio & Gonçalves, Antônio Maurício de Matos & Nascimento, Hebe, 2022. "Quasi-dynamic operation and maintenance plan for photovoltaic systems in remote areas: The framework of Pantanal-MS," Renewable Energy, Elsevier, vol. 181(C), pages 404-416.

    More about this item

    Keywords

    impact evaluation; rural electrification; electric grid;
    All these keywords.

    JEL classification:

    • O13 - Economic Development, Innovation, Technological Change, and Growth - - Economic Development - - - Agriculture; Natural Resources; Environment; Other Primary Products
    • O38 - Economic Development, Innovation, Technological Change, and Growth - - Innovation; Research and Development; Technological Change; Intellectual Property Rights - - - Government Policy
    • Q56 - Agricultural and Natural Resource Economics; Environmental and Ecological Economics - - Environmental Economics - - - Environment and Development; Environment and Trade; Sustainability; Environmental Accounts and Accounting; Environmental Equity; Population Growth

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