Design of Battery Control System for Frequency Restoration and Lifetime Preservation

G. Donnini, E. Carlini, G. Giannuzzi, R. Zaottini, L. Ortolano, C. Pisani, E. Chiodo, D. Lauria, F. Mottola
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Abstract

This paper presents a novel approach for the optimal design of the control system for battery energy storage systems adopted in power systems in the framework of the primary frequency control. The challenge issued by the use of batteries for frequency control in modern power systems is related to the need of the repeatedly deep charge and discharge phases. The presence of intermittent loads and generators, in fact, imposes very stressful power profiles to the battery which imply high rate of degradation to its lifetime. Based on the stress model of the battery, the proposed approach aims to design a control system which allows for containing the state of charge time variation within intervals able to match the requirements of frequency profile improvements and lifetime preservation. At this aim, the typical control scheme for batteries adopted for primary frequency control is analyzed and elaborated to address stable dynamic behavior of the regulator. Moreover, starting from the observation of the statistical nature of the power request for the pure frequency regulation service, a statistical study is conducted to perform an optimal design of the regulator in terms of both lifetime duration and primary frequency regulation service.
频率恢复和寿命保持电池控制系统的设计
本文提出了一种在一次频率控制框架下电力系统中蓄电池储能系统控制系统优化设计的新方法。在现代电力系统中,使用电池进行频率控制所带来的挑战与反复深度充放电阶段的需要有关。事实上,间歇性负载和发电机的存在给电池施加了非常大的压力,这意味着电池寿命的高退化率。该方法基于电池的应力模型,旨在设计一种控制系统,该控制系统可以将充电状态的时间变化控制在能够满足频率谱改善和寿命保持要求的区间内。为此,分析和阐述了用于一次频率控制的典型电池控制方案,以解决稳压器的稳定动态行为。此外,从观察纯调频业务功率请求的统计性质出发,从寿命持续时间和一次调频业务两方面进行了统计研究,对稳压器进行了优化设计。
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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