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Accelerated life tests of complete lithium-ion battery systems for battery life statistics assessment

机译:用于电池寿命统计评估的完整锂离子电池系统的加速寿命试验

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The paper investigates the performances of automotive lithium-ion battery systems, which are considered as one of the most promising candidates for the use on electric and hybrid vehicles. Indeed, lithium batteries show technical properties and features particularly suitable for these applications in which high energy and power densities are required. In order to investigate lithium-ion battery major technical limitations, a set of experimental testing activities has been carried on battery packs and systems, whose behaviours are expected to be significantly different from the test results on single cells. One of the most crucial challenge is the problem of the battery lifetime. Many approaches have been proposed in the relevant literature, but a lot of difficulties persist, being related to the incidence of many factors which do not allow to derive a quite general model able to describe in an exhaustive way battery performances under different operating conditions. In the paper, a method is proposed which takes into account the randomness of the battery parameters, such as design maximum specific power and operating environment, in real operating condition, with reference to lithium ion batteries designed for a small electric bus (public transport service). Based on available experimental data, the lifetime probability distribution of these batteries has been estimated by means of a Weibull model.
机译:本文调查了汽车锂离子电池系统的性能,被认为是电动和混合动力汽车上使用最有前途的候选人之一。实际上,锂电池显示了技术性能和特征,特别适用于这些应用,其中需要高能量和功率密度。为了调查锂离子电池的主要技术限制,电池组和系统上进行了一组实验测试活动,其行为预计与单细胞上的测试结果有显着差异。最重要的挑战之一是电池寿命的问题。在相关文献中提出了许多方法,但很多困难持续存在,与许多因素的发病有关,这些因素不允许推导出相当一般模型能够在不同的操作条件下以详尽的方式描述电池性能。本文提出了一种方法,该方法考虑了电池参数的随机性,例如设计最大特定功率和操作环境,参考专为小型电动总线设计的锂离子电池(公共交通服务)。基于可用的实验数据,通过Weibull模型估计了这些电池的寿命概率分布。

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