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Hybrid off-grid renewable power system for sustainable rural electrification in Benin

机译:贝宁可持续农村电气化的混合离网可再生能源系统

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Providing power to rural communities, which are far from the grid and suffer from lack of energy access in Africa, especially in Benin, in a sustainable manner requires the adoption of appropriate technology. This paper aims at analysing the techno-economic feasibility of hybrid renewable energy system (HRES) for sustainable rural electrification in Benin, using a case study of Fouay village. HOMER software is used to perform optimization, simulation and sensitivity analysis. The analysis showed that hybrid solar photovoltaics (PV)/diesel generator (DG)/battery (of 150 kW/62.5 kVA/637 kWh) is the least cost optimal system. This system ensures a reliable power supply, reduces battery requirements by 70% compared to PV/battery system and achieves 97% CO2 emissions reduction compared to a conventional DG. Moreover, the study demonstrated that the most economical HRES depends strongly on the potential energy sources available at a location and power plant's remoteness from the beneficiary. In summary, as solar radiation is an abundant resource across the country, this hybrid PV/DG/battery system can be a suitable model to power remote areas in Benin, and we recommend it for future electrification projects in the country in place of the current widely deployed PV/battery system. (C) 2019 Elsevier Ltd. All rights reserved.
机译:为非洲偏远地区的农村社区供电,并且要以可持续的方式为非洲特别是贝宁的能源匮乏之苦,需要采用适当的技术。本文旨在通过对Fouay村进行案例分析,分析混合可再生能源系统(HRES)在贝宁实现可持续农村电气化的技术经济可行性。 HOMER软件用于执行优化,仿真和灵敏度分析。分析表明,混合太阳能光伏(PV)/柴油发电机(DG)/电池(150 kW / 62.5 kVA / 637 kWh)是成本最低的最佳系统。与传统的DG相比,该系统可确保可靠的电源供应,与PV /电池系统相比,可将电池需求减少70%,并减少97%的CO2排放。此外,研究表明,最经济的HRES很大程度上取决于某个地点和电厂远离受益者的可用潜在能源。综上所述,由于太阳能辐射在全国范围内是一种丰富的资源,因此这种混合式PV / DG /电池系统可以成为向贝宁偏远地区供电的合适模型,我们建议将其替代该国的未来电气化项目广泛部署的光伏/电池系统。 (C)2019 Elsevier Ltd.保留所有权利。

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