住宅储能系统建模对电力系统的影响

IF 2.3 Q3 ENVIRONMENTAL SCIENCES Sustainable Environment Pub Date : 2022-09-27 DOI:10.1080/27658511.2022.2125905
Sushita K, Shanmugasundaram N, K. Suriyan, N. R, Kanagaraj Venusamy
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引用次数: 2

摘要

利用储能技术可以提高电力系统的可靠性。对能源存储技术进行了严格的检查,包括存储类型,分类和比较。电化学和电池储能、热能和热化学储能、飞轮储能、压缩空气储能、抽水蓄能、磁性储能、化学储能和氢储能都被考虑在内。分析了近年来新型储能类型的研究进展及其在储能领域的重要成果和发现。本研究的目标是对电池储能系统(BESS)对电力系统和微电网的影响进行全面、系统的评估。2010年至2021年初发表的同行评议研究为SLR(系统文献综述)提供了基础。由于风能或阳光不足,风能和太阳能等可再生能源(RESs)经常受到波动的影响。能量存储技术(est)通过存储多余的能量并在需要时提供能量来帮助解决这个问题。尽管有几个EST调查,但文献是碎片化和过时的。EST特性和应用的比较非常简单。本文的目的就是填补这一空白。它确定了主要的无害环境技术,并根据一套标准提供了关于无害环境技术及其在可再生能源工业中的潜在用途的最新文献概述。关键分析表明,锂离子电池在公用事业电网整合领域具有很高的潜在适用性,并且适合缓解可再生能源的波动性。然而,锂离子电池的成本必须降低,以使其完全用于可再生能源电网整合。长期以来,人们已经证明,通过将能量存储引入电网,可以提高系统的可靠性,降低传输成本。能源储存装置的发展得益于促进使用可再生能源而不是化石燃料的法规。这一领域的研究也存在空白。为了帮助学者更好地掌握储能系统的可靠性含义,并填补该领域的知识空白,本综述可供参考。在可再生能源方面,风力涡轮机和太阳能光伏系统是最常见的两种。相比之下,使用可再生能源的优点和缺点很多。可再生能源最大的缺陷是它无法产生稳定的电力。由于可再生能源电力输出的不规律性和需求的突然高峰或下降,很难保持发电和需求之间的平衡。因此,电网电压和频率会出现偏差,导致运行困难,并可能危及电网的稳定。电池储能系统(BESS)可以用来调节可再生能源的输出,保持电网的稳定。
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Impacts of residential energy storage system modeling on power system
ABSTRACT Power system reliability can be improved with the use of energy storage. Energy storage technologies are examined critically, including storage kinds, categorizations, and comparisons. Electrochemical and battery energy storage, thermal and thermochemical energy storage, flywheel energy storage, compressed air energy storage, pumped energy storage, magnetic energy storage, chemical and hydrogen energy storage are all taken into account. The recent research on novel energy storage kinds and its significant achievements and discoveries in energy storage are analyzed. It is the goal of this study to undertake a complete and systematic evaluation of the influence of battery energy storage systems (BESS) on power systems and microgrids. Peer-reviewed studies published between 2010 and the start of 2021 provides the basis of the SLR (Systematic Literature Review). Due to inadequate wind or sunlight, renewable energy sources (RESs) like wind and solar are regularly subjected to swings. Energy storage technologies (ESTs) help to solve the issue by storing extra energy and making it available when it’s needed. Despite the fact that there are several EST investigations, the literature is fragmented and out of date. The comparison of EST features and applications is very brief. The purpose of this article is to fill that void. It identifies major ESTs and offers an updated overview of the literature on ESTs and their potential use in the renewable energy industry, based on a set of criteria. The critical analysis reveals that Li-ion batteries have a high potential applicability in the utility grid integration sector and are BESS suited to alleviate RES volatility. However, Li-ion batteries’ costs must be decreased in order for them to be completely utilized in RES utility grid integration. It has long been shown to improve system dependability and reduce transmission costs by introducing energy storage into power networks. The development of energy storage devices is aided by regulations that promote the use of renewable energy sources rather than fossil fuels. There are also voids in this field of research. To help academics better grasp the dependability implications of energy storage systems and fill in knowledge gaps in the field, this review is available. Reduced emissions and global warming as a result of the increased usage of renewable energy resources In terms of renewable energy, wind turbines and solar PV systems are two of the most common. In contrast, the advantages and downsides of using renewable energy sources are numerous. Renewable energy’s biggest flaw is its inability to generate consistent amounts of power. It is difficult to maintain a balance between generation and demand due to the irregularity of renewable energy sources’ power output and the sudden spikes or dips in demand. Consequently, there will be deviations in grid voltage and frequency, leading to operational difficulties and perhaps jeopardizing grid stability. Battery energy storage systems (BESS) can be used to regulate the output of renewable energy sources and keep the grid stable.
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来源期刊
Sustainable Environment
Sustainable Environment ENVIRONMENTAL SCIENCES-
CiteScore
4.40
自引率
4.30%
发文量
21
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