Optimal and Economic Evaluation of a Stand-alone Microgrid for Electricity and Water Supply for Namibia’s Rural Village

T. Wanjekeche, Theophilus Ananias
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引用次数: 1

Abstract

Stand-alone microgrid hold a primary solution for electricity and water supply in remote areas access to National grid is not possible. This paper presents a detailed optimal sizing and economic evaluations of a stand-alone microgrid for a remote village (Amarika) in Namibia. Several renewable energy sources such as wind turbines and photovoltaic arrays were considered with a battery backup storage system and a reverse osmosis desalination plant for water supply. Modelling of the microgrid was done based on the meteorological data, the daily water and energy demand of the village. Particle swarm optimization was employed for the system techno- economic optimization: to determine a suitable microgrid configuration that can be established at minimum cost. Sensitivity analysis of the system was performed to examine the effect of variation of LPSP on LCOE. The results demonstrate that the optimized microgrid configuration and the optimization algorithm are effective and can be adopted in supplying power and water to the village. The levelized cost of electricity proves the economic feasibility of the microgrid. The levelized cost of electricity falls within a 90% standard deviation (σ=0.065) of the mean. This proved to be economically feasible with a 96.5% reliability of power supply.
为纳米比亚农村提供电力和水的独立微电网的最佳和经济评估
独立的微电网是解决偏远地区电力和水供应的主要办法,接入国家电网是不可能的。本文详细介绍了纳米比亚一个偏远村庄(Amarika)的独立微电网的最佳规模和经济评估。几个可再生能源,如风力涡轮机和光伏阵列被考虑与电池备用存储系统和反渗透海水淡化厂供水。基于气象数据、村庄日常用水和能源需求对微电网进行建模。采用粒子群算法对系统进行技术经济优化,确定以最小成本建立的合适微电网配置。对系统进行敏感性分析,考察LPSP变化对LCOE的影响。结果表明,优化后的微网配置和优化算法是有效的,可用于向村庄供电和供水。电力成本的平准化证明了微电网的经济可行性。电的平准化成本落在平均值的90%标准差(σ=0.065)之内。这被证明是经济可行的,电源可靠性为96.5%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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