Energy Storage Optimization for Grid Reliability

Md Umar Hashmi, Deepjyoti Deka, Lucas Pereira, A. Bušić
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Abstract

Large scale renewable energy source (RES) integration planned for multiple power grids around the world will require additional resources/reserves to achieve secure and stable grid operations to mitigate the inherent intermittency of RES. In this paper, we present formulations to understand the effect of fast storage reserves in improving grid reliability under different cost functions. Our formulations not only aim to minimize imbalance but also maintain state-of-charge (SoC) of storage. The proposed approaches rely on a macroscopic supply-demand model of the grid with total power output of energy storage as the control variable. We show that accounting for system response due to inertia and local governor response enables a more realistic quantification of storage requirements for damping net load fluctuations. Simulation case studies are embedded in the paper by using datasets from the Elia TSO in Belgium and BPA in the USA. The numerical results benchmark the marginal effect on reliability due to increasing storage size under different system responses and associated cost functions. Further we observe myopic control of batteries proposed approximates deterministic control of batteries for faster time scale reserve operation.
电网可靠性的储能优化
全球多个电网的大规模可再生能源(RES)整合计划将需要额外的资源/储备来实现安全稳定的电网运行,以减轻RES固有的间歇性。在本文中,我们提出了不同成本函数下快速存储储备对提高电网可靠性的影响的公式。我们的配方不仅旨在最大限度地减少不平衡,而且还保持存储状态(SoC)。所提出的方法依赖于以储能总输出功率为控制变量的电网宏观供需模型。我们表明,考虑到由于惯性和局部调速器响应引起的系统响应,可以更现实地量化阻尼净负载波动的存储需求。通过使用来自比利时Elia TSO和美国BPA的数据集,论文中嵌入了模拟案例研究。在不同的系统响应和相关的成本函数下,数值结果对存储容量增加对可靠性的边际效应进行了基准测试。进一步,我们观察了电池的近视控制,提出了电池的近似确定性控制,以实现更快的时间尺度储备运行。
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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