On the use of energy storage technologies for regulation services in electric power systems with significant penetration of wind energy

Bo Yang, Y. Makarov, J. DeSteese, V. Viswanathan, P. Nyeng, B. McManus, J. Pease
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引用次数: 102

Abstract

Energy produced by intermittent renewable resources is sharply increasing in the United States. At high penetration levels, volatility of wind power production could cause additional problems for the power system balancing functions such as regulation. This paper reports some partial results of a project work, recently conducted by the Pacific Northwest National Laboratory (PNNL) for Bonneville Power Administration (BPA). The project proposes to mitigate additional intermittency with the help of Wide Area Energy Management System (WAEMS) that would provide a two-way simultaneous regulation service for the BPA and California ISO systems by using a large energy storage facility. The paper evaluates several utility-scale energy storage technology options for their usage as regulation resources. The regulation service requires a participating resource to quickly vary its power output following the rapidly and frequently changing regulation signal. Several energy storage options have been analyzed based on thirteen selection criteria. The evaluation process resulted in the selection of flywheels, pumped hydro electric power (or conventional hydro electric power) plant and sodium sulfur or nickel cadmium batteries as candidate technologies for the WAEMS project. A cost benefit analysis should be conducted to narrow the choice to one technology.
关于在风能显著渗透的电力系统中使用储能技术进行调节服务
在美国,由间歇性可再生资源生产的能源正在急剧增加。在高渗透水平下,风力发电的波动性可能会给电力系统平衡功能(如监管)带来额外的问题。本文报告了太平洋西北国家实验室(PNNL)最近为邦纳维尔电力管理局(BPA)进行的一项项目工作的部分结果。该项目建议在广域能源管理系统(WAEMS)的帮助下减轻额外的间歇性,该系统将通过使用大型储能设施为BPA和加州ISO系统提供双向同步调节服务。本文评估了几种公用事业规模的储能技术方案作为监管资源的使用。调节服务要求参与资源根据快速且频繁变化的调节信号快速改变其输出功率。根据13个选择标准分析了几种储能方案。评估过程的结果是选择飞轮、抽水水力发电(或常规水力发电)电厂和钠硫或镍镉电池作为WAEMS项目的候选技术。应该进行成本效益分析,将选择范围缩小到一种技术。
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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