Energy and Economic Analysis of Renewable Energy-Based Isolated Microgrids with AGM and Lithium Battery Energy Storage: Case Study Bigene, Guinea-Bissau

IF 2.1 Q3 ENVIRONMENTAL SCIENCES Urban science (Basel, Switzerland) Pub Date : 2023-06-14 DOI:10.3390/urbansci7020066
J. A. Aguilar-Jiménez, L. Hernández-Callejo, José Alejandro Suástegui-Macías, Víctor Alonso Gómez, Alfonso García-Álvaro, Raúl Maján-Navalón, Lilian J. Obregón
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Abstract

By the year 2020, 90% of the population with access to electricity worldwide was surpassed. However, the reality is very different for many countries, especially for those on the African continent that had more than 572 million people without electricity service at the end of 2019. This work studies the implementation of an isolated microgrid activated with photovoltaic energy and energy storage in batteries under the case study of the community of Bigene, located in the African country of Guinea-Bissau. This type of project is a potential solution to the problem of access to energy, but as the cost of the energy storage system is typically very high, this work technically and economically addresses the effect of using absorbed glass material (AGM) and lithium batteries. A simulator was developed using TRNSYS software to analyze the operation of the microgrid under a defined annual demand profile for different types of users, and economic analysis was conducted considering a project lifetime of 25 years. The results showed no significant differences in the solar fraction of both types of batteries when the photovoltaic power was less than 600 kW, regardless of the capacity of the storage bank. The analysis of auxiliary power requirements showed that lithium technology leads to a lower consumption from 800 kW of PV capacity, and utilizing less than this capacity did not have a significant difference with AGM batteries. In this microgrid with a photovoltaic capacity of less than 700 kW and an energy storage of less than 2580 kWh, the type of storage technology, AGM or lithium, did not represent a considerable difference in the levelized cost of energy, indicating that AGM technology could be selected considering its low initial investment cost compared to lithium batteries.
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基于可再生能源的AGM和锂电池储能隔离微电网的能源和经济分析:以几内亚比绍比根为例
到2020年,全世界90%的用电人口被超过。然而,许多国家的现实情况却大不相同,尤其是非洲大陆的国家,截至2019年底,这些国家有5.72亿人没有电力服务。这项工作在位于非洲国家几内亚比绍的比根社区的案例研究下,研究了用光伏能源和电池储能激活的孤立微电网的实施。这类项目是能源获取问题的潜在解决方案,但由于储能系统的成本通常很高,这项工作在技术和经济上解决了使用吸收玻璃材料(AGM)和锂电池的影响。使用TRNSYS软件开发了一个模拟器,用于分析不同类型用户在定义的年度需求曲线下的微电网运行情况,并在考虑25年项目寿命的情况下进行了经济分析。结果表明,当光伏功率小于600千瓦时,无论储能组的容量如何,两种类型的电池的太阳能份额都没有显著差异。对辅助电源需求的分析表明,锂技术降低了800千瓦光伏发电容量的消耗,并且使用低于该容量的电池与AGM电池没有显著差异。在这种光伏容量小于700千瓦、储能小于2580千瓦时的微电网中,AGM或锂存储技术的类型在平准化能源成本方面没有显著差异,这表明可以选择AGM技术,因为与锂电池相比,AGM技术的初始投资成本较低。
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4.30
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0.00%
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0
审稿时长
11 weeks
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