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Experimental investigation on the internal resistance of Lithium iron phosphate battery cells during calendar ageing

机译:日历老化过程中锂铁磷酸锂电池内阻的实验研究

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Lithium-ion batteries are increasingly considered for a wide area of applications because of their superior characteristics in comparisons to other energy storage technologies. However, at present, Lithium-ion batteries are expensive storage devices and consequently their ageing behavior must be known in order to estimate their economic viability in different application. The ageing behavior of Lithium-ion batteries is described by the fade of their discharge capacity and by the decrease of their power capability. The capability of a Lithium-ion battery to deliver or to absorb a certain power is directly related to its internal resistance. This work aims to investigate the dependency of the internal resistance of lithium-ion batteries on the storage temperature and on the storage time. For this purpose, accelerated ageing calendar lifetime tests were carried out over a period of one year. Based on the obtained laboratory results, an empirical ageing model was developed; the model is able to predict with accurately the increase of the internal resistance of Lithium-ion batteries during calendar (storage) ageing. Based on the proposed ageing model, it was found out that the internal resistance of the studied Lithium-ion battery cell will double after approximately eleven years if stored at 25°C.
机译:由于其与其他能量存储技术的比较优异的特性,锂离子电池越来越多地考虑了广泛的应用领域。然而,目前,锂离子电池是昂贵的存储装置,因此必须已知其老化行为以估计其在不同应用中的经济可行性。锂离子电池的老化行为由其放电容量的衰落和降低其功率能力来描述。锂离子电池提供或吸收某种功率的能力与其内阻直接相关。这项工作旨在研究锂离子电池内阻对储存温度和储存时间的依赖性。为此目的,加速老化日历寿命测试在一年内进行。基于所获得的实验室结果,开发了经验老化模型;该模型能够精确地预测锂离子电池在日历(储存)老化期间的内阻的增加。基于所提出的老化模型,发现如果在25℃下储存,所研究的锂离子电池电池的内阻将增加大约十年之后。

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