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Microgrid System Evaluation Using Capacity Factor For an Off-grid Community in Nigeria

Author

Listed:
  • Elizabeth Oses Amuta

    (Department of Electrical and Information Engineering, Covenant University, Ota, Nigeria)

  • Wara Samuel Tita

    (Department of Electrical and Computer Engineering, Afe Babalola University, Ado-Ekiti, Nigeria)

  • Agbetuyi Ayoade Felix

    (Department of Electrical and Information Engineering, Covenant University, Ota, Nigeria)

  • Orovwode Hope Evwieroghene

    (Department of Electrical and Information Engineering, Covenant University, Ota, Nigeria)

  • Matthew Simeon

    (Department of Electrical and Electronics Engineering, Federal University of Agriculture, Abeokuta, Nigeria)

  • Tobi Somefun

    (Department of Electrical and Information Engineering, Covenant University, Ota, Nigeria)

Abstract

With the high rate of economic development, there is an increasing load demand even in rural communities and Obayantor in Nigeria. Obayantor, having zero connection to the primary grid, needs electricity. Following the community located in a tropical rejoin of Nigeria, it has enough solar energy sources. With the high price of diesel fuel, solar microgrid seems to be the best energy solution for the rural community. In this study, technical and economic analysis was carried out on the solar-based microgrid and compared with a diesel-only microgrid using MATLAB Software tool. The results show that the solar microgrid is more cost-effective and has a cheaper COE, affordable for the rural community compared with the diesel microgrid, which is more expensive to afford. The Annual system cost for the solar microgrid was lower compared with the diesel source. The result also revealed that the diesel-alone microgrid system is 4.71 times and 0.2 times more costly than the solar-based microgrid system in terms of the cost of energy and ASC, respectively. Thereby making the diesel microgrid not having technical and economic feasibility for the community.

Suggested Citation

  • Elizabeth Oses Amuta & Wara Samuel Tita & Agbetuyi Ayoade Felix & Orovwode Hope Evwieroghene & Matthew Simeon & Tobi Somefun, 2022. "Microgrid System Evaluation Using Capacity Factor For an Off-grid Community in Nigeria," International Journal of Energy Economics and Policy, Econjournals, vol. 12(2), pages 181-187, March.
  • Handle: RePEc:eco:journ2:2022-02-20
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    References listed on IDEAS

    as
    1. Fodhil, F. & Hamidat, A. & Nadjemi, O., 2019. "Potential, optimization and sensitivity analysis of photovoltaic-diesel-battery hybrid energy system for rural electrification in Algeria," Energy, Elsevier, vol. 169(C), pages 613-624.
    2. Ali, Fahad & Ahmar, Muhammad & Jiang, Yuexiang & AlAhmad, Mohammad, 2021. "A techno-economic assessment of hybrid energy systems in rural Pakistan," Energy, Elsevier, vol. 215(PA).
    3. Hafez, Omar & Bhattacharya, Kankar, 2012. "Optimal planning and design of a renewable energy based supply system for microgrids," Renewable Energy, Elsevier, vol. 45(C), pages 7-15.
    4. Javed, Muhammad Shahzad & Song, Aotian & Ma, Tao, 2019. "Techno-economic assessment of a stand-alone hybrid solar-wind-battery system for a remote island using genetic algorithm," Energy, Elsevier, vol. 176(C), pages 704-717.
    5. Jiang, Lu & Yu, Lu & Xue, Bing & Chen, Xingpeng & Mi, Zhifu, 2020. "Who is energy poor? Evidence from the least developed regions in China," Energy Policy, Elsevier, vol. 137(C).
    Full references (including those not matched with items on IDEAS)

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    More about this item

    Keywords

    Microgrid; Net Present Cost; Capacity factor; Simple Payback Period; Cost of Electricity;
    All these keywords.

    JEL classification:

    • Q2 - Agricultural and Natural Resource Economics; Environmental and Ecological Economics - - Renewable Resources and Conservation
    • Q42 - Agricultural and Natural Resource Economics; Environmental and Ecological Economics - - Energy - - - Alternative Energy Sources
    • P51 - Political Economy and Comparative Economic Systems - - Comparative Economic Systems - - - Comparative Analysis of Economic Systems

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