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Effects of Temperature Differences Among Cells on the Discharging Characteristics of Lithium-Ion Battery Packs with Series/Parallel Configurations during Constant Power Discharge

机译:恒电断电期间锂离子电池组锂离子电池组液位电池组排出特性的影响

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摘要

This work aims to make a comparative analysis of the unbalanced discharging phenomenon for battery packs with series/parallel configurations due to the temperature differences among the cells. A theoretically-based model is developed for the battery pack and constant power discharging processes are simulated by the model. At a constant temperature difference, lowering the operating temperature increases the divergence among the cell terminal voltages for the series pack and the cell discharging currents for the parallel pack. Increasing the temperature differences decreases the dischargeable energy of the series battery pack, whereas it has little effect on that of the parallel configuration. Given the same temperature difference, the cell energy differences within the parallel battery pack are 5-10 times higher than those within the series configuration, which shows that the temperature can be maintained much more uniformly for a parallel battery pack than for series configuration.
机译:这项工作旨在对由于细胞之间的温度差异而具有串联/并行配置的电池组不平衡放电现象的比较分析。 为电池组开发了基于理论基础的模型,并且通过模型模拟了恒定功率放电过程。 在恒定的温差下,降低操作温度会增加串联包装的电池端子电压和平行包装的电池放电电流之间的发散。 增加温度差异降低了串联电池组的可放电能量,而它对平行配置的影响几乎没有影响。 考虑到相同的温差,并联电池组内的电池能量差比串联配置内的细胞能量差异为5-10倍,这表明温度可以保持比串联配置更均匀地保持更均匀的。

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