Improving the performance of PV/diesel microgrids via integration of a battery energy storage system: the case of Bilgo village in Burkina Faso

IF 4.6 3区 工程技术 Q2 ENERGY & FUELS
Daniel Yamegueu, Henri Thomas Nelson, Amidou Singho Boly
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Abstract

Background

PV/diesel microgrids are getting more popular in rural areas of sub-Saharan Africa, where the national grid is often unavailable. Most of the time, for economic purposes, these hybrid PV/diesel power plants in rural areas do not include any storage system. This is the case in the Bilgo village in Burkina Faso, where a PV/diesel microgrid without any battery storage system has been set up. This power plant is composed of three diesel generators operating in parallel (two of 16 kW and one of 24 kW), coupled with a photovoltaic field of 30 kWp. It was observed that for such power plants, the grid management is not always efficient due to constantly fluctuating solar output and loads. This inconsistency in energy output raises the question if integrating battery energy storage systems could improve the grid's performance. While many studies in the literature focus on hybrid energy systems, only a few of them have tackled the optimization of existing and operational systems.

Methods

This study investigated three scenarios based on the existing microgrid's characteristics: conventional standalone diesel generators, PV/diesel without battery storage and PV/diesel with a battery storage system which are the main technologies used for off-grid rural electrification in Burkina Faso. The levelized cost of electricity (LCOE) was used to assess the economic performance of each scenario, and the calculations were made using the HOMER software.

Results

It was found that the best among the scenarios considered is the PV/diesel/battery configuration which has the lowest LCOE of US$ 0.524/kWh. The battery storage system for the optimal configuration has a capacity of 182 kWh with about 8 h of autonomy.

Conclusions

It can be inferred from this study that a storage unit is necessary for an optimal management of a PV/diesel microgrid. Indeed, the storage unit significantly reduces the operating and maintenance costs associated with running diesel generators, as well as the excess electricity. The storage system also allows for a greater reduction in CO2 emissions compared to systems without storage.

通过集成电池储能系统提高光伏/柴油微电网的性能:布基纳法索 Bilgo 村的案例
光伏/柴油微电网在撒哈拉以南非洲的农村地区越来越受欢迎,因为那里通常没有国家电网。出于经济目的,农村地区的这些光伏/柴油混合发电厂大多不包括任何储能系统。布基纳法索的 Bilgo 村就属于这种情况,那里建立了一个光伏/柴油微电网,没有任何电池存储系统。该电站由三台并联运行的柴油发电机(两台 16 千瓦,一台 24 千瓦)和一个 30 千瓦的光伏发电场组成。据观察,由于太阳能输出和负荷不断波动,电网管理对这类发电厂来说并不总是有效的。这种能量输出的不一致性提出了一个问题:集成电池储能系统是否能改善电网性能?虽然许多文献研究的重点是混合能源系统,但只有少数研究涉及现有系统和运行系统的优化问题。本研究根据现有微电网的特点调查了三种方案:传统的独立柴油发电机、不带电池储能的光伏/柴油发电以及带电池储能系统的光伏/柴油发电,这些都是布基纳法索农村离网电气化的主要技术。采用平准化电力成本(LCOE)来评估每种方案的经济效益,并使用 HOMER 软件进行计算。结果发现,在所考虑的各种方案中,最佳方案是光伏/柴油/电池配置,其 LCOE 最低,为 0.524 美元/千瓦时。最佳配置的电池存储系统容量为 182 千瓦时,自主运行时间约为 8 小时。从这项研究中可以推断出,要优化光伏/柴油微电网的管理,就必须使用蓄电装置。事实上,储能装置大大降低了柴油发电机的运行和维护成本,同时也减少了多余的电力。与没有储能装置的系统相比,储能系统还能大大减少二氧化碳排放量。
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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来源期刊
Energy, Sustainability and Society
Energy, Sustainability and Society Energy-Energy Engineering and Power Technology
CiteScore
9.60
自引率
4.10%
发文量
45
审稿时长
13 weeks
期刊介绍: Energy, Sustainability and Society is a peer-reviewed open access journal published under the brand SpringerOpen. It covers topics ranging from scientific research to innovative approaches for technology implementation to analysis of economic, social and environmental impacts of sustainable energy systems.
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