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Remote area power supply in Nigeria: the prospects of solar energy

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  • Bugaje, I.M
Abstract
This paper analyses power supply options for remote areas of Nigeria. Three systems were examined namely solar powered systems, conventional diesel generator plant and connection to the national grid. The analysis has shown that solar (photovoltaic) systems are the most economically viable, offering the least energy cost per annum. Photovoltaic power systems also provide a virtually maintenance free operation since they have no moving parts.

Suggested Citation

  • Bugaje, I.M, 1999. "Remote area power supply in Nigeria: the prospects of solar energy," Renewable Energy, Elsevier, vol. 18(4), pages 491-500.
  • Handle: RePEc:eee:renene:v:18:y:1999:i:4:p:491-500
    DOI: 10.1016/S0960-1481(98)00814-3
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    References listed on IDEAS

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    1. Arulanantham, M. & Avanti, P. & Kaushika, N.D., 1997. "Solar pond with honeycomb surface insulation system," Renewable Energy, Elsevier, vol. 12(4), pages 435-443.
    2. Herwig, Lloyd O., 1997. "Impacts of global electrification based upon photovoltaic technologies," Renewable Energy, Elsevier, vol. 10(2), pages 139-143.
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    Citations

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    Cited by:

    1. Dornan, M., 2011. "Solar-based rural electrification policy design: The Renewable Energy Service Company (RESCO) model in Fiji," Renewable Energy, Elsevier, vol. 36(2), pages 797-803.
    2. Maatallah, Taher & El Alimi, Souheil & Nassrallah, Sassi Ben, 2011. "Performance modeling and investigation of fixed, single and dual-axis tracking photovoltaic panel in Monastir city, Tunisia," Renewable and Sustainable Energy Reviews, Elsevier, vol. 15(8), pages 4053-4066.
    3. Chaurey, Akanksha & Kandpal, Tara Chandra, 2010. "Assessment and evaluation of PV based decentralized rural electrification: An overview," Renewable and Sustainable Energy Reviews, Elsevier, vol. 14(8), pages 2266-2278, October.
    4. Peter, Raja & Ramaseshan, B & Nayar, C.V, 2002. "Conceptual model for marketing solar based technology to developing countries," Renewable Energy, Elsevier, vol. 25(4), pages 511-524.
    5. Nguyen, Khanh Q., 2007. "Alternatives to grid extension for rural electrification: Decentralized renewable energy technologies in Vietnam," Energy Policy, Elsevier, vol. 35(4), pages 2579-2589, April.
    6. Bugaje, I.M., 2006. "Renewable energy for sustainable development in Africa: a review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 10(6), pages 603-612, December.
    7. Giwa, Adewale & Alabi, Adetunji & Yusuf, Ahmed & Olukan, Tuza, 2017. "A comprehensive review on biomass and solar energy for sustainable energy generation in Nigeria," Renewable and Sustainable Energy Reviews, Elsevier, vol. 69(C), pages 620-641.
    8. Thiam, Djiby-Racine, 2010. "Renewable decentralized in developing countries: Appraisal from microgrids project in Senegal," Renewable Energy, Elsevier, vol. 35(8), pages 1615-1623.
    9. Suberu, Mohammed Yekini & Mustafa, Mohd Wazir & Bashir, Nouruddeen & Muhamad, Nor Asiah & Mokhtar, Ahmad Safawi, 2013. "Power sector renewable energy integration for expanding access to electricity in sub-Saharan Africa," Renewable and Sustainable Energy Reviews, Elsevier, vol. 25(C), pages 630-642.
    10. Dada, Joseph O., 2014. "Towards understanding the benefits and challenges of Smart/Micro-Grid for electricity supply system in Nigeria," Renewable and Sustainable Energy Reviews, Elsevier, vol. 38(C), pages 1003-1014.
    11. Thiam, Djiby Racine, 2011. "An energy pricing scheme for the diffusion of decentralized renewable technology investment in developing countries," Energy Policy, Elsevier, vol. 39(7), pages 4284-4297, July.

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