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Optimal Power Dispatch Strategy for Multiple Battery Containers in a Grid-scale BESS Station

机译:网格级BESS站中多个电池容器的最优功率分配策略

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A grid-scale BESS station usually contains multiple battery containers and corresponding electric paths. Each path and container could become a dispatchable unit when receiving network operators' orders. Battery containers will perform differently after long-term use, especially considering a mixed utilization of new and recycled battery. Currently the storage import/export power is distributed equally among containers. The dispatch and control strategy for containers mainly focus on their capacity constraint, rather than their performance, temperature, and ageing conditions. This paper proposed a novel optimal power dispatch strategy for multiple battery containers in a BESS station. This method established the mathematical relationship between battery ageing with SOC, DOD, operating temperature and charging state transition times. The minimum total battery ageing is used as the optimization objective to achieve the optimal power dispatch among containers. The simulation results showed this strategy helps to balance the ageing, temperature and SOC between containers, leading to a more reliable and secure operation of BESS station.
机译:网格级贝尔站通常包含多个电池容器和相应的电路。在接收网络运营商的订单时,每个路径和容器都可以成为可调度单元。长期使用后电池容器将不同,特别是考虑到新的和再生电池的混合利用。目前存储的存储/导出电源在容器之间平均分发。容器的调度和控制策略主要关注其容量约束,而不是其性能,温度和老化条件。本文提出了一种新型电池容器在贝塞站中的最佳功率派遣策略。该方法建立了电池老化与SOC,DOD,工作温度和充电状态转换时间之间的数学关系。最小总电池老化用作优化目标,以实现容器之间的最佳功率派遣。仿真结果表明,该策略有助于平衡容器之间的老化,温度和SOC,导致贝塞站更可靠和安全的操作。

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