Technical and Economic Assessment of solar PV/diesel Hybrid Power System for Rural School Electrification in Ethiopia
Abstract
Abstract- this paper proposes the most feasible configuration of solar PV system with diesel generator as back up for hypothetical rural school electrification around Arbaminch town(6.0333° N, 37.5500° E) in southern region of Ethiopia. Integration of PV systems with the diesel plants is being disseminated worldwide to reduce diesel fuel consumption and to minimize atmospheric pollution and the proposed simulation has be done to assure that the PV-Diesel hybrid system is Economically and technically feasible for Ethiopia as well.  The proposed system can supply daily energy demand of 50kWh / day with 11kW peak  for 24 hour. Technical and economic analysis of the optimum system has been done to compare economic viability of solar photovoltaic    ( PV)/ gen/battery hybrid power  system with that of standalone diesel generator only system. For analysis purpose HOMER simulation software has been used and meteorological data of solar insulation of the site has been taken from Online data of NASA . To incorporate uncertainty in solar radiation and diesel fuel price , both are taken as sensitivity variable in simulation. The costs of components are taken from online site of manufactures and equipment suppliers and adjusted to Ethiopian price value. The result of simulation shows that solar PV system with Generator backup is more cost effective and environmental friendly over the conventional diesel generator alone system with in life time of the project.
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. Alliance for Rural Electrification, “Hybrid power systems based on renewable Energies; suitable and cost competitive solution for rural Electrificationâ€
. M.A. Elhadidy and S.M. Shaahid, “Parametric study of hybrid (wind + solar + diesel) power generating systemsâ€, Journal of Renewable Energy, Vol. 21, pp. 129-139
. HOMER V2.68 beta, National Renewable Energy Laboratory (NREL), 617 Cole Boulevard,(online) Available : http://www.nrel.gov/homer
. Solar market Research and analysis (online) Available: http://www.solarbuzz.com/node/3184, accessed on 15 April, 2013
. Givler,T. and Lilienthal, P. (2005). “Using HOMER Software, NREL’s Micro-power Optimization Model, to explore the Role of Gen-sets in Small Solar Power Systems; Case Study: Sri Lanka Technical Report†National Renewable Energy Laboratory,USA.
. M.H.Nehrir, C.Strunz “A Review of hybrid renewable /alternative Energy for Electric Power Generationâ€, IEEE Transaction on Sustainable Energy Vol, 2 No.4, October 2011
. SMA web site http://www.sma.de/ accessed on 13/08/2013
.Mike Meinhardt, Martin Rothert, Alfred Engler, ''New V/f–Statics controlled Battery Inverter: Sunny Island- the key component for AC-Coupled Hybrid Systems and Mini Grids'' , European union More Microgrid project paper.
http://www.microgrids.eu/micro2000/presentations/4.pdf
. W. J. Kaszeta, Handbook of Secondary Storage Batteries and Charge Regulators in Photovoltaic Systems, Arizona Solar Center, Inc. in 2002.
. Solar Stand-Alone Power and Backup Power Supply, SMA solar technology, TechnologyCompendium 2. http://files.sma.de/dl/10040/INSELVERSOR-AEN101410.pdf
DOI (PDF): https://doi.org/10.20508/ijrer.v3i3.819.g6199
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