公用事业规模的光伏电站可变性和斜坡速率控制的能量存储

R. van Haaren, M. Morjaria, V. Fthenakis
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引用次数: 8

摘要

平衡当局目前正在探索利用成本因果原则将电网中传统发电机的额外爬坡成本转移回可变能源的方案。在本文中,我们展示了美国和加拿大7个总装机容量为445兆瓦(交流)的大型光伏电站输出功率的短期变化特征。此外,我们将提出一种方法,用于研究云诱导斜坡速率控制中储能的使用,该方法是根据时间序列光伏电站的功率输出开发的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Utility scale PV plant variability and energy storage for ramp rate control
Balancing authorities are currently exploring options for transferring the additional ramping costs of conventional generators in the grid back to the variable energy resources using the principle of cost causation. In this paper, we present a characterization of short-term variability in power output of seven large-scale PV plants in the United States and Canada with a total installed capacity of 445 MW (AC). In addition, we will present a methodology for investigating the use of energy storage for cloud-induced ramp rate control, which is developed with time-series PV plant power output.
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