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首页> 外文期刊>Journal of Energy Storage >Battery energy-storage system: A review of technologies, optimization objectives, constraints, approaches, and outstanding issues
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Battery energy-storage system: A review of technologies, optimization objectives, constraints, approaches, and outstanding issues

机译:电池储能系统:审查技术,优化目标,约束,方法和突出问题

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摘要

Due to urbanization and the rapid growth of population, carbon emission is increasing, which leads to climate change and global warming. With an increased level of fossil fuel burning and scarcity of fossil fuel, the power industry is moving to alternative energy resources such as photovoltaic power (PV), wind power (WP), and battery energy-storage systems (BESS), among others. BESS has some advantages over conventional energy sources, which include fast and steady response, adaptability, controllability, environmental friendliness, and geographical independence, and it is considered as a potential solution to the global warming problem. This paper provides a comprehensive review of the battery energy-storage system concerning optimal sizing objectives, the system constraint, various optimization models, and approaches along with their advantages and weakness. Furthermore, for better understanding, the optimization objectives and methods have been classified into different categories. This paper also provides a detailed discussion on the BESS applications and explores the shortages of existing optimal BESS sizing algorithms to identify the gaps for future research. The issues and challenges are also highlighted to provide a clear idea to the researchers in the field of BESS. Overall, this paper conveys some significant recommendations that would be useful to the researchers and policymakers to structure a productive, powerful, efficient, and robust battery energy-storage system toward a future with a sustainable environment.
机译:由于城市化和人口的快速增长,碳排放正在增加,导致气候变化和全球变暖。随着化石燃料燃烧水平的增加和化石燃料的稀缺,电力行业正在迁移到替代能源资源,如光伏电源(PV),风电(WP)和电池储能系统(BESS)等。 BESS与传统能源的一些优势,包括快速且稳定的响应,适应性,可控性,环境友好和地理独立性,并且被认为是全球变暖问题的潜在解决方案。本文提供了对最佳尺寸目标,系统约束,各种优化模型以及其优点和弱点的方法的电池储能系统的全面审查。此外,为了更好地理解,优化目标和方法已被分类为不同的类别。本文还提供了关于BESS应用的详细讨论,并探讨了现有最佳BESS大小算法的短缺,以识别未来研究的间隙。问题和挑战也强调为贝塞领域的研究人员提供明确的想法。总体而言,本文通过了研究人员和政策制定者对研究人员和政策制定者进行了一些有用的建议,以实现具有可持续环境的未来生产力,强大,高效,强大的电池储能系统。

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