globalchange  > 全球变化的国际研究计划
DOI: 10.1186/s13705-019-0217-0
WOS记录号: WOS:000477882500002
论文题名:
Supply optimization based on society's cost of electricity and a calibrated demand model for future renewable energy transition in Niger
作者: Tilahun, Fitsum Bekele1; Bhandari, Ramchandara1; Mamo, Mengesha2
通讯作者: Bhandari, Ramchandara
刊名: ENERGY SUSTAINABILITY AND SOCIETY
ISSN: 2192-0567
出版年: 2019
卷: 9
语种: 英语
英文关键词: Electricity demand projection ; Supply optimization ; Society' ; s cost of electricity (SCOE) ; Levelized cost of electricity (LCOE) ; Renewable energy transition ; Niger
WOS关键词: SYSTEM DYNAMICS ; HYDRO POWER ; CONSUMPTION ; URBANIZATION ; INTEGRATION ; EMISSIONS ; FRAMEWORK ; FORECAST ; INDUSTRIALIZATION ; AFRICA
WOS学科分类: Green & Sustainable Science & Technology ; Energy & Fuels
WOS研究方向: Science & Technology - Other Topics ; Energy & Fuels
英文摘要:

BackgroundIn an attempt to realize the most beneficial and optimal mix of electricity generation in Niger, a society's cost of electricity (SCOE) as the levelized cost of electricity (LCOE) plus the cost of climate change and air pollution is formulated. The SCOE is used as a basis for setting the performance criteria for supply optimization to balance future electricity demand in Niger. The demand projection is derived from a system dynamics model that anticipates future changes based on its influencing factors of population growth, urbanization progress, and industrial development.ResultsReference case and what-if scenarios are simulated to see the projected electricity demand and possible renewable energy transition pathways. As a result, for example, the annual electricity of 3214GWh estimated for 2030 might be balanced with about 200MW, 104MW, 85MW, and 63MW power from hydropower, grid-tied PV, coal, and diesel for SCOE optimized grid. For the same case, a greenhouse gas (GHG) emission reduction of 11.26-15.66% could be achieved when compared to the LCOE-based optimized grid. In addition, the most preferred energy option hydropower will be almost exhausted when the projected electricity demand in 2035 reaches slightly more than double its value in 2025. Thus, Niger should start exploiting its solar as well as conventional sources intensively to balance its future energy demand.ConclusionsIn this work, a mixed energy grid is optimized primarily on affordability while considering its sustainability. The implemented holistic approach lessens the need for energy import in the country and provides relief to energy security issues such as electricity price volatility and supply reliability. Additionally, the proposed strategy helps to guide the renewable energy transition pathway in Niger.


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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/143842
Appears in Collections:全球变化的国际研究计划

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作者单位: 1.TH Koln Univ Appl Sci, Inst Technol & Resources Management Trop & Subtro, Betzdorfer Str 2, D-50679 Cologne, Germany
2.Addis Ababa Univ, Inst Technol, King George VI St, Addis Ababa, Ethiopia

Recommended Citation:
Tilahun, Fitsum Bekele,Bhandari, Ramchandara,Mamo, Mengesha. Supply optimization based on society's cost of electricity and a calibrated demand model for future renewable energy transition in Niger[J]. ENERGY SUSTAINABILITY AND SOCIETY,2019-01-01,9
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