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Social Impacts of Solar Home Systems in Rural Areas: A Case Study in Bangladesh

Author

Listed:
  • Ehsanul Kabir

    (Department of Farm Power and Machinery, Bangladesh Agricultural University, Mymensingh 2202, Bangladesh)

  • Ki-Hyun Kim

    (Department of Civil and Environmental Engineering, Hanyang University, 222 Wangsimni-Ro, Seoul 04763, Korea)

  • Jan E. Szulejko

    (Department of Civil and Environmental Engineering, Hanyang University, 222 Wangsimni-Ro, Seoul 04763, Korea)

Abstract

As an alternative source of off-grid electric power, solar home systems (SHS) stand out above all other options (e.g., wind, hydro, geo-thermal, tidal systems) because of their wide-scale potential at latitudes less than 45° north or south of the Equator where daily solar irradiance is more constant throughout the year and where the bulk of the Third World’s population live. A questionnaire-based survey study was carried out in a rural area of Bangladesh to ascertain the impacts of SHSs on the lives of the rural population. The installation of an SHS was found to improve the comfort and living standard of rural dwellers. Easier access to TV, radio, cellphone, and the Internet helped the rural population become part of a more global culture. More attractive down-payment and installment package options will allow poor target groups to adopt this system. The standard of SHS components and after-sales service should be improved to ensure sustainably and popularity among the mass population for at least 10 years at minimal cost to the consumer. Our findings can also help policymakers adopt more SHS-friendly policies to further the interests of inhabitants of rural areas that are not connected to the grid.

Suggested Citation

  • Ehsanul Kabir & Ki-Hyun Kim & Jan E. Szulejko, 2017. "Social Impacts of Solar Home Systems in Rural Areas: A Case Study in Bangladesh," Energies, MDPI, vol. 10(10), pages 1-12, October.
  • Handle: RePEc:gam:jeners:v:10:y:2017:i:10:p:1615-:d:115146
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    References listed on IDEAS

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    1. Opiyo, Nicholas, 2016. "A survey informed PV-based cost-effective electrification options for rural sub-Saharan Africa," Energy Policy, Elsevier, vol. 91(C), pages 1-11.
    2. Samad, Hussain A. & Khandk, Shahidur R. & Asaduzzaman, M. & Yunus, Mohammad, 2013. "The benefits of solar home systems :an analysis from Bangladesh," Policy Research Working Paper Series 6724, The World Bank.
    3. Kudo, Yuya & Shonchoy, Abu S. & Takahashi, Kazushi, 2015. "Impacts of solar lanterns in geographically challenged locations : experimental evidence from Bangladesh," IDE Discussion Papers 502, Institute of Developing Economies, Japan External Trade Organization(JETRO).
    4. Yuya KUDO & Abu S. Shonchoy & Kazushi Takahashi, 2019. "Short-Term Impacts of Solar Lanterns on Child Health: Experimental Evidence from Bangladesh," Journal of Development Studies, Taylor & Francis Journals, vol. 55(11), pages 2329-2346, November.
    5. Urmee, Tania & Harries, David, 2011. "Determinants of the success and sustainability of Bangladesh’s SHS program," Renewable Energy, Elsevier, vol. 36(11), pages 2822-2830.
    6. Li, Shuhui & Haskew, Timothy A. & Li, Dawen & Hu, Fei, 2011. "Integrating photovoltaic and power converter characteristics for energy extraction study of solar PV systems," Renewable Energy, Elsevier, vol. 36(12), pages 3238-3245.
    7. Parida, Bhubaneswari & Iniyan, S. & Goic, Ranko, 2011. "A review of solar photovoltaic technologies," Renewable and Sustainable Energy Reviews, Elsevier, vol. 15(3), pages 1625-1636, April.
    8. Hossain Mondal, Md. Alam, 2010. "Economic viability of solar home systems: Case study of Bangladesh," Renewable Energy, Elsevier, vol. 35(6), pages 1125-1129.
    9. Mala, Kirti & Schläpfer, August & Pryor, Trevor, 2009. "Better or worse? The role of solar photovoltaic (PV) systems in sustainable development: Case studies of remote atoll communities in Kiribati," Renewable Energy, Elsevier, vol. 34(2), pages 358-361.
    10. Susmita Mukherjee & P.B. Ghosh, 2014. "Estimation of carbon credit and direct carbon footprint by solar photovoltaic cells in West Bengal, India," International Journal of Low-Carbon Technologies, Oxford University Press, vol. 9(1), pages 52-55.
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