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Influence of Battery Downsizing and SOC Operating Window on Battery Pack Performance in a Hybrid Electric Vehicle

机译:电池小型化和SOC操作窗口对混合动力电动汽车电池组性能的影响

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This paper provides a parametric study for (1) downsizing a battery pack (reducing the number of battery cells), potentially reducing cost and weight; and (2) lowering the nominal operating SOC to reduce degradation. The downsized pack design with shifted SOC window is evaluated in a light- duty hybrid electric vehicle (HEV) where the power demanded by the battery pack is specified prior to downsizing. A calibrated electro-thermal model and a semi-empirical capacity fade model are used to capture voltage, state-of-charge, temperature and capacity loss of the downsized battery. The capacity fade model is developed based on a novel set of experiments designed to clarify the influence of nominal operating SOC on battery degradation. The parametric study shows that the pack size could be reduced from 76 to 64 cells while shifting nominal operating SOC from 50% to 35% without experiencing battery power denials. This would result in a 20% increase in energy utilization per cell, with only a 0.4% increase in capacity fade.
机译:本文为以下方面提供了参数研究:(1)缩小电池组的尺寸(减少电池单元的数量),从而有可能降低成本和重量; (2)降低标称工作SOC,以降低性能。在轻型混合动力汽车(HEV)中评估了具有SOC窗口偏移的小型化电池组设计,在该混合动力汽车中,在小型化之前指定了电池组所需的功率。校准的电热模型和半经验容量衰减模型用于捕获小型电池的电压,充电状态,温度和容量损失。基于一组新的实验开发了容量衰减模型,这些实验旨在阐明标称工作SOC对电池退化的影响。参数研究表明,电池组的大小可以从76个减少到64个电池单元,同时将标称工作SOC从50%改变为35%,而不会遇到电池电量不足的情况。这将导致每个电池的能源利用率提高20%,而容量衰减仅提高0.4%。

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