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Assessment of battery ageing and implementation of an ageing aware control strategy for a load leveling application of a lithium titanate battery energy storage system

机译:用于钛酸锂电池储能系统的载荷调平应用的电池老化和实现老化感知控制策略的评估

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The manuscript describes a method to embed into a battery energy storage system (BESS) control strategy the performance degradation associated with the battery operation. In particular, the proposed method aims at minimizing the degradation of the BESS electrochemical cells. A load leveling strategy is described as a case study and the ageing effects associated with the battery current extraction are embedded as constraints into the optimization problem. The main contributions of the work, compared to the existing literature are: i) the degradation process is formulated as a weighted energy throughput, thus taking into account the C-rate effect on the degradation phenomena; ii) the performance of the proposed control strategy has been applied to a large scale lithium-titanate BESS of 280 kWh interfaced to a 20 kV active distribution network.
机译:稿件描述了一种嵌入电池能量存储系统(BESS)控制策略的方法,该方法与电池操作相关联的性能劣化。特别地,所提出的方法旨在最小化贝丝电化学电池的劣化。将负载调平策略描述为案例研究,并且与电池电流提取相关的老化效果被嵌入为优化问题的约束。与现有文献相比,工作的主要贡献是:i)将降解过程制定为加权能量产量,从而考虑到对降解现象的C速率影响; ii)拟议的控制策略的性能已应用于280 kWh的大型锂钛酸盐底座接口到20kV主动分配网络。

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