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Hybrid microgrid for microfinance institutions in rural areas - A field demonstration in West Africa

机译:用于农村地区小额信贷机构的混合微电网-西非的现场演示

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We present a hybrid energy microgrid optimization model for a microbank in a remote rural residential area. The model is based on the use of renewable (wind turbines & solar photovoltaic (PV)) and conventional (gasoline generators) energy sources and battery storage systems. We conducted a detailed assessment of a typical microbank's load, residential loads and energy resources in a village called Ajasse-Ipo in Kwara State, Nigeria. We performed the modeling of a hybrid microgrid system, followed by an economic analysis and sensitivity analysis to optimize the hybrid system design. We performed simulations based on the energy resources available (solar PV, wind, gasoline generator & battery energy storage system) to satisfy the energy demands of the microbank, while the excess energy was supplied to meet the demand of the community loads, i.e. water pumping machine and rural home lighting. The results obtained showed that the hybrid system comprising the solar PV/battery/diesel was most techno-economically viable with a Net Present Cost (NPC) and Cost of Energy (COE) of $468,914 and 0.667$/kWh, respectively. Comparing these results with those obtained using analytical methods, the solar PV, battery and converter sizes obtained were slightly higher than the optimal system configurations as produced by HOMER. The proposed hybrid energy system also allowed to achieve almost 50% reductions in CO2, CO, unburned hydrocarbons, particulate matter, SO2 & NO2. The system can be applicable for other rural regions in the developing countries with similar environmental conditions.
机译:我们提出了一个偏远农村居民区的微型银行的混合能源微电网优化模型。该模型基于可再生能源(风力涡轮机和太阳能光伏(PV))和常规能源(汽油发电机)和电池存储系统的使用。我们对尼日利亚Kwara州一个名为Ajasse-Ipo的村庄的典型微型银行的负荷,住宅负荷和能源进行了详细评估。我们对混合微电网系统进行了建模,然后进行了经济分析和敏感性分析,以优化混合系统设计。我们根据可用的能源(太阳能光伏,风能,汽油发电机和电池储能系统)进行了模拟,以满足微型银行的能源需求,同时提供了多余的能源以满足社区负荷的需求,即抽水机器和农村家庭照明。获得的结果表明,由太阳能光伏/电池/柴油组成的混合系统在技术上经济可行,其净现成本(NPC)和能源成本(COE)分别为468,914美元和0.667 $ / kWh。将这些结果与使用分析方法获得的结果进行比较,获得的太阳能光伏电池,电池和转换器的尺寸略高于HOMER生产的最佳系统配置。拟议的混合能源系统还允许将CO2,CO,未燃烧的碳氢化合物,颗粒物,SO2和NO2减少近50%。该系统可适用于环境条件类似的发展中国家的其他农村地区。

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