Operative Factors Affecting Energy Balancing and Speed of Equalization in Battery Storage System

O. Palizban, K. Kauhaniemi
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Abstract

Energy storage systems play a significant role in power management systems and control of the modern grid. One of the most challenging issues is controlling storage units in distributed form. This paper presents a possible means of controlling Energy Storage Systems (ESS) through a decentralized approach. Moreover, the balancing and equalization of stored energy in different storage units presents other challenges in such systems; to deal with this, the paper discuss here the factors that affect energy balancing and the speed of the energy balance convergence. A Proportional-Integral (PI) controller is used in the upper control level to generate an accurate reference value for the State of Charge (SoC), and a modified droop control is employed on the lower control level to equalize the energy on the basis of the SoC. To evaluate the control algorithm and to investigate the factors that affect the speed of equalization, this paper considers the result of a case study with three battery storage units.
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影响蓄电池储能系统能量均衡和均衡速度的操作因素
储能系统在现代电网的电力管理和控制中占有重要地位。最具挑战性的问题之一是控制分布式形式的存储单元。本文提出了一种通过分散方法控制储能系统(ESS)的可能方法。此外,在这种系统中,不同存储单元中存储能量的平衡和均衡提出了其他挑战;针对这一问题,本文讨论了影响能量平衡的因素和能量平衡收敛的速度。上层控制层采用比例积分(PI)控制器生成准确的荷电状态(SoC)参考值,下层控制层采用改进的下垂控制,在荷电状态的基础上实现能量均衡。为了评估控制算法并研究影响均衡速度的因素,本文考虑了三个电池存储单元的案例研究结果。
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