电池间差异及电池设计对并联锂离子电池热电不平衡的影响

A. Fill, K. Birke
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引用次数: 5

摘要

为了满足大规模应用的电力和能量需求,电池由大量的单个电池组成。在电池运行过程中,由于电池之间的差异和电池设计公差,电池电池之间的电和热不平衡会产生。这种不均匀的应力会导致单个电池的加速退化,从而降低整个电池的寿命。为了防止这种影响,深入了解电池不平衡的影响,包括充电状态(SoC)、温度和电流,对于改进电池运行策略至关重要。本文以两个并联电池为实验对象,研究了电池间差异和电池热设计对上述电池不平衡的影响。实验采用不同细胞参数方差的三组细胞进行。为了研究电池封装和电池设计的热影响,考虑了不同的冷却方案,如电池的绝缘和非均匀冷却。
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Influences of Cell to Cell Variances and the Battery Design on thermal and electrical imbalances among parallel Lithium-Ion Cells
Batteries consist of a high number of single cells in order to fulfill the power and energy requirements of large-scale applications. Electrical and thermal imbalances among the cells of the battery arise during operation caused by cell to cell variations and battery design tolerances. This heterogeneous stress can result in a accelerated degradation of individual cells, which reduces the lifetime of the whole battery. To prevent this effect insights of the impacts on cell imbalances, regarding the State of Charge (SoC), temperature and current, are essential to improve the battery operation strategy. In this paper the influence of cell to cell variances and the thermal design of the battery on the mentioned cell imbalances are experimentally investigated for two parallel-connected cells. Experiments with three cell groups, having different cell parameter variances, are conducted. In order to investigate the thermal influence of the cell packaging and battery design, different cooling scenarios are considerd, like an insulation and a heterogeneous cooling of the cells.
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