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Analysis and modeling of calendar aging of a commercial LiFePO_4/graphite cell

机译:商用LiFePO_4 /石墨电池日历老化的分析和建模

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This paper presents a comprehensive calendar aging study on a lithium-ion battery with a test duration of 29 months. This aging study was realized with a widely used commercial LiFePO4/graphite cell fromSony/Murata, which promises both long calendar and cycle lifetime, which is especially required for stationary battery applications. The development of the cells’ capacity, as well as the resistances, are shown in a static calendar aging study for 17 test points, each with 3 cells, having constant storage conditions of temperature and state of charge. Based on the measurement data, a semi-empirical aging model is presented for the capacity loss and resistance increase, consisting of only 5 parameters which are valid for all storage conditions. An additional dynamic calendar aging study is performed with 9 months test duration for model validation, consisting of 15 test points with varying conditions of temperature and state of charge. The absolute model errors against the validation data points remain below 2.2% for the capacity loss and below 6.9% for the resistance increase for all dynamic validation tests. In conclusion, this calendar aging model allows the prognosis of the calendar lifetime of LiFePO4/graphite batteries in different applications with varying storage conditions over time.
机译:本文对锂离子电池进行了全面的日历老化研究,测试持续时间为29个月。这项老化研究是由Sony / Murata的一种广泛使用的商用LiFePO4 /石墨电池实现的,该电池具有长的日历寿命和循环寿命,这是固定电池应用特别需要的。静态日历老化研究显示了电池容量和电阻的发展情况,该研究涉及17个测试点,每个测试点具有3个电池,并具有恒定的温度和荷电状态存储条件。根据测量数据,提出了容量损失和电阻增加的半经验老化模型,该模型仅包含5个对所有存储条件均有效的参数。进行了另外的动态日历老化研究,测试时间为9个月,用于模型验证,包括15个测试点,温度和荷电状态各不相同。对于所有动态验证测试,相对于验证数据点的绝对模型误差对于容量损失而言保持在2.2%以下,对于电阻增加而言则在6.9%以下。总之,这种日历老化模型可以预测LiFePO4 /石墨电池在不同应用中随时间变化的存储条件下的日历寿命。

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