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Feasibility analysis of grid-connected and islanded operation of a solar PV microgrid system: A case study of Iraq

机译:太阳能光伏微电网系统并网孤岛运行的可行性分析:以伊拉克为例

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Iraq has massive potential for electricity generation from solar energy. Because the country currently suffers from daily electricity shortages, a grid-connected PV system is an unsuitable option since the PV cannot serve the load during the electricity blackouts. This paper aims to analyze the techno-economic and environmental feasibility of a solar PV microgrid system which is able to supply the load during both grid availability and outage periods. A household in Baghdad was selected as a case study. HOMER software was used to carry out the overall analysis using five different control strategies. The results indicated that the most economical configuration was achieved by allowing the grid to charge the batteries at all rates, with a net present cost (NPC) of $29,713. A sustainability assessment revealed that preventing the grid from charging the battery resulted in the highest renewable fraction and the lowest CO_2 emissions with 64.9% and 4533 kg/year, respectively. Furthermore, inserting a diesel generator to an economically optimized system was found to reduce the NPC by 11.6%, while increasing the CO_2 emissions by 32.7%. This study showed that implementing this sort of project can provide clean, economical, and continuous electricity production in countries with daily blackouts.
机译:伊拉克具有巨大的太阳能发电潜力。由于该国当前每天都在遭受电力短缺的困扰,因此并网光伏发电系统是不合适的选择,因为在停电期间光伏无法为负载供电。本文旨在分析太阳能光伏微电网系统的技术经济和环境可行性,该系统能够在电网可用性和停电期间提供负载。选择了巴格达的一个家庭作为案例研究。使用HOMER软件使用五种不同的控制策略进行整体分析。结果表明,最经济的配置是通过允许电网以所有速率为电池充电而实现的,当前净成本(NPC)为29,713美元。可持续性评估显示,阻止电网为电池充电会导致最高的可再生分数和最低的CO_2排放,分别为64.9%和4533千克/年。此外,发现在经济优化的系统中安装柴油发电机可将NPC降低11.6%,同时将CO_2排放量提高32.7%。这项研究表明,实施此类项目可以在每天停电的国家/地区提供清洁,经济和持续的电力生产。

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