Analysis of electrical energy storage technologies' state-of-the-art and applications on islanded grid systems

A. W. Bizuayehu, P. Medina, J. Catalão, E. Rodrigues, J. Contreras
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引用次数: 19

Abstract

A successful deployment of electrical energy storage (EES) in current electricity grid systems is a plausible episode in several power systems given the outstanding technical, economic and environmental benefits that EES provides. Also, more distributed resources are becoming key actors in remotely located renewable energy based and poorly interconnected island grid systems. Healing these fragile grid systems in islands requires devising and promoting a robust grid system operation. Such move should go hand in hand with an increasing distributed energy resource use to guarantee sustainable renewable energy integration into these systems. In the present document, EES technologies and applications have been compiled, where special emphasis has been given on islands, studying their particular requirements and technology appropriateness on operating project experiences around the world, from which some lessons can be learned. Conclusions about EES technologies' general suitability on island systems are duly drawn throughout the content of this paper.
孤岛电网储能技术现状及应用分析
鉴于电能存储提供的突出的技术、经济和环境效益,在当前电网系统中成功部署电能存储(EES)在几个电力系统中是一个看似合理的事件。此外,更多的分布式资源正在成为远程可再生能源基础和互连不良的岛屿电网系统的关键角色。修复岛屿上这些脆弱的电网系统需要设计和促进一个强大的电网系统运行。这一举措应该与增加分布式能源的使用齐头并进,以确保可持续的可再生能源融入这些系统。本文件汇编了环境电气技术和应用,其中特别强调岛屿,研究了它们的特殊要求和技术是否适合世界各地的操作项目经验,从中可以吸取一些教训。关于EES技术在岛屿系统上的一般适用性的结论贯穿全文。
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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