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Analysis of Lithium-ion Battery Cells Degradation Based on Different Manufacturers

机译:不同厂家的锂离子电池性能下降分析

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Lithium-ion batteries are recognised as a key technology to power electric vehicles and integrate grid-connected renewable energy resources. The economic viability of these applications is affected by the battery degradation during its lifetime. This study presents an extensive experimental degradation data for lithium-ion battery cells from three different manufactures (Sony, BYD and Samsung). The Sony and BYD cells are of LFP chemistry while the Samsung cell is of NMC. The capacity fade and resistance increase of the battery cells are quantified due to calendar and cycle aging. The charge level and the temperature are considered as the main parameters to affect calendar aging while the depth of discharge, current rate and temperature for cycle aging. It is found that the Sony and BYD cells with LFP chemistry has calendar capacity loss of nearly 5% and 8% after 30 months respectively. Moreover, the Samsung NMC cell reached 80% state of health after 3000 cycles at 35°C and 75% discharge depth suggesting a better cycle life compared to the other two battery cells with the same conditions.
机译:锂离子电池被公认为是为电动汽车提供动力并整合并网可再生能源的关键技术。这些应用的经济可行性受其寿命期间电池退化的影响。这项研究提供了来自三个不同制造商(索尼,比亚迪和三星)的锂离子电池的广泛实验退化数据。索尼和比亚迪电池采用的是LFP化学成分,而三星电池则采用的是NMC。由于日历和循环老化,量化了电池单元的容量衰减和电阻增加。电荷水平和温度被认为是影响日历老化的主要参数,而放电深度,电流速率和循环老化的温度则受到影响。发现在30个月后,具有LFP化学成分的Sony和BYD电池的日历容量损失分别接近5%和8%。此外,三星NMC电池在35°C下经过3000次循环和75%的放电深度后达到80%的健康状态,这表明与其他两个相同条件的电池相比,其循环寿命更长。

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