Feasibility and optimal design of a hybrid power system for rural electrification for a small village

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Abstract

A hybrid renewable energy system is at present accepted globally, as the best option for rural electrification particularly in areas where grid extension is infeasible. However, the need for hybrid design to be optimal in terms of operation and component selection serves as a challenge in obtaining reliable electricity at a minimum cost. In this work, the feasibility of installing a small hydropower into an existing water supply dam and the development of an optimal sizing optimization model for a small village-Itapaji, Nigeria were carried out. The developed hybrid power system (HPS) model consists of solar photovoltaic, small hydropower, battery and diesel generator. The optimal sizing of the system's components for optimum configuration was carried out using Genetic Algorithm. The hybrid model's results were compared with hybrid optimization model for electric renewable (HOMER) using correlation coefficient (r) and root mean square error (RMSE) to verify its validity. The results of the simulation obtained from the developed model showed better correlation coefficient (r) of 0.88 and root mean square error (RMSE) of 0.001 when compared to that of HOMER. This will serve as a guide for the power system engineers in the feasibility assessment and optimal design of HPS for rural electrification.

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APA

Adebanji, B., Adepoju, G. A., Olulope, P., Fasina, T., & Adetan, O. (2020). Feasibility and optimal design of a hybrid power system for rural electrification for a small village. International Journal of Electrical and Computer Engineering, 10(6), 6214–6224. https://doi.org/10.11591/IJECE.V10I6.PP6214-6224

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