An approach of battery energy management systems for DC micro-grids considering stateflow controller

Ndeke Bipongo Christian, Adonis Marco
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Abstract

This paper presents an approach of battery energy management systems for DC micro-grids considering Stateflow controller. In micro-grids, batteries have been the favorite energy storage technology focus on addressing and accelerate United Nations Sustainable Development Goal 7 'Affordable and Clean Energy' as well as contributing to the discussion around the long-term mitigation of climate change. However, their improper or non-effective operations can cause over-current, overvoltage or overcharging/discharging and significantly impact on their lifespan and on the micro-grid reliability. Comparatively to Lithium Ion (Li-ion) battery, most of the technologies present some issues, which can impact negatively on the battery lifetime as well as the average of energy stored in the battery. In case of battery bank, the deep discharge or the premature charge of battery can lead to a reduced lifetime of the storage system. The aim of this study was to develop a battery management system algorithm to control the charging/discharging of a battery bank and to keep its state of charge in the admissible limits to avoid the deep charging/discharging of the battery within a DC micro-grid. The objectives of this proposed work were to develop a control system schemes for the DC microgrid and to develop an energy management system using MATLAB/Simulink software. The results of the scenarios of the developed algorithm have shown that this algorithm could be able to ensure the reliability, the resiliency, the robustness and the proper operation of the battery systems in micro-grids. The results have shown that the initial investment cost could comparatively be lower and could decrease the economic analyze in terms of LCOE.
一种考虑状态流控制器的直流微电网电池能量管理系统
本文提出了一种考虑状态流控制器的直流微电网电池能量管理系统。在微电网中,电池一直是最受欢迎的储能技术,专注于解决和加速联合国可持续发展目标7“负担得起的清洁能源”,并有助于围绕长期减缓气候变化的讨论。但其不当或不有效的操作会导致过流、过压或过充放电,严重影响其使用寿命和微电网可靠性。与锂离子(Li-ion)电池相比,大多数技术都存在一些问题,这些问题会对电池寿命和电池平均存储能量产生负面影响。在蓄电池组中,蓄电池的深度放电或过早充电会导致存储系统的使用寿命缩短。本研究的目的是开发一种电池管理系统算法来控制电池组的充放电,并将其充电状态保持在允许的范围内,以避免直流微电网内电池的深度充放电。本工作的目标是开发直流微电网的控制系统方案,并使用MATLAB/Simulink软件开发能源管理系统。仿真结果表明,该算法能够保证微电网中电池系统的可靠性、弹性、鲁棒性和正常运行。结果表明,初始投资成本相对较低,可以降低LCOE的经济分析。
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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