Evaluation of Energy Storage Technologies and Applications Pinpointing Renewable Energy Resources Intermittency Removal

H. Saboori, S. Dehghan, S. Jadid
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引用次数: 2

Abstract

Renewable energy sources (RES), especially wind power plants, have high priority of promotion in the energy policies worldwide. An increasing share of RES and distributed generation (DG), should, as has been assumed, provide improvement in reliability of electricity delivery to the customers. Paper presented here concentrates on electricity storage systems technologies and applications pinpointing renewable energies variability removal. It can be seen from presented issues that there are numerous options to energy storage systems which can assist in generation and load shifting, peak shaving, transmission expansion planning deferral, ancillary services procurement, and power quality issues. Focus of applications is on renewable resources intermittency elimination. Some related issues including relation between electricity markets and storage systems, system expansion and storage systems, and correlation among smart grid issues and storage systems are also presented. As a result, some comparisons are conducted in terms of various interested criterions in the field of energy storage comprising storage capacity, power level, response time, unit investment and operation costs, round trip efficiency, physical dimensions, cycle life time, life time, availability, and environmental impacts.
储能技术与应用评价:针对可再生能源的间歇性去除
可再生能源,特别是风力发电,在世界各国的能源政策中具有高度的优先推广地位。可再生能源和分布式发电(DG)所占份额的增加,应该会如人们所设想的那样,提高向客户供电的可靠性。本文主要介绍了电力存储系统的技术和应用,以精确地消除可再生能源的可变性。从所提出的问题可以看出,储能系统在发电和负荷转移、调峰、输电扩展规划延迟、辅助服务采购和电能质量问题上有多种选择。应用的重点是可再生资源的间歇性消除。提出了电力市场与存储系统的关系、系统扩容与存储系统的关系、智能电网与存储系统的关系等相关问题。因此,根据储能领域的各种感兴趣的标准进行了一些比较,包括存储容量,功率水平,响应时间,单位投资和运行成本,往返效率,物理尺寸,循环寿命时间,寿命时间,可用性和环境影响。
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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