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Distributed Control Scheme for Package-Level State-of-Charge Balancing of Grid-Connected Battery Energy Storage System

机译:并网电池储能系统封装级荷电平衡的分布式控制方案

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摘要

For the battery energy storage system (BESS) consisting of multiple battery packages, package-level state-of-charge (SOC) balancing can provide safety redundancy in protecting battery packages from overcharging or overdischarging, and maintain the maximum power capacity of the overall BESS. In this paper, a distributed control scheme is proposed for package-level SOC balancing of a grid-connected BESS. The proposed control scheme comprises three parts. First, each battery package shares its SOC with its neighboring battery packages over the communication network. Based on the SOCs of its own and its neighbors, each battery package is equipped with an energy coordinator. Second, for each battery package, a distributed observer is employed to estimate the average desired power output, which is used to determine the local reference power output together with the energy coordinator. Third, local current controller is synthesized for each battery package to achieve local reference power output tracking. Comprehensive case studies are conducted to evaluate the effectiveness of the proposed control scheme.
机译:对于由多个电池组组成的电池储能系统(BESS),封装级充电状态(SOC)平衡可提供安全冗余,以防止电池组过充或过放,并保持整个BESS的最大功率容量。本文提出了一种分布式控制方案,用于并网BESS的封装级SOC平衡。建议的控制方案包括三个部分。首先,每个电池组通过通信网络与其相邻的电池组共享其SOC。基于自身和邻居的SOC,每个电池组都配备了一个能量协调器。其次,对于每个电池组,采用分布式观察器来估计平均期望功率输出,该平均期望功率输出与能量协调器一起用于确定本地参考功率输出。第三,为每个电池组合成本地电流控制器,以实现本地参考功率输出跟踪。进行了全面的案例研究,以评估所提出的控制方案的有效性。

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