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Batteries 2020 — Lithium-ion battery first and second life ageing, validated battery models, lifetime modelling and ageing assessment of thermal parameters

机译:电池2020 —锂离子电池第一次和第二次寿命老化,经过验证的电池模型,寿命建模和热参数老化评估

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The European Project “Batteries 2020” unites nine partners jointly working on research and the development of competitive European automotive batteries. The project aims at increasing both the energy density and lifetime of large format pouch lithium-ion batteries towards the goals targeted for automotive batteries (250 Wh/kg at cell level, over 4000 cycles at 80% depth of discharge). Three parallel strategies are followed in order to achieve those targets: (i) Highly focused materials development; two improved generations of NMC cathode materials allows to improve the performance, stability and cyclability of state of the art battery cells. (ii) Better understanding of the ageing phenomena; a robust and realistic testing methodology has been developed and was carried out. Combined accelerated, real driving cycle tests, real field data, post-mortem analysis, modelling and validation with real driving profiles was used to obtain a thorough understanding of the degradation processes occurring in the battery cells. (iii) Reduction of battery cost; a way to reduce costs, increase battery residual value and improve sustainability is to consider second life uses of batteries used in electric vehicle application. These batteries are still operational and suitable to less restrictive conditions, such as those for stationary and renewable energy application. Therefore, possible second life opportunities have been identified and further assessed. In this paper, the main ageing effects of lithium ion batteries are explained. Next, an overview of different validated battery models will be discussed. Finally, a methodology for assessing the performance of the battery cells in a second life application is presented.
机译:欧洲项目“电池2020”由九个合作伙伴共同致力于研究和开发具有竞争力的欧洲汽车电池。该项目旨在提高大型袋装锂离子电池的能量密度和使用寿命,以实现汽车电池的目标(电池电量为250 Wh / kg,放电深度为80%时超过4000个循环)。为了实现这些目标,遵循了三个并行的策略:(i)高度集中的材料开发; NMC阴极材料的两代改进可以改善现有电池的性能,稳定性和可循环性。 ii更好地了解老化现象;已经开发并实施了一种强大而现实的测试方法。结合使用了加速的,真实的驾驶循环测试,真实的现场数据,事后分析,建模和具有真实驾驶特征的验证,可以全面了解电池单元中发生的退化过程。 iii减少电池费用;降低成本,增加电池剩余价值并提高可持续性的一种方法是考虑电动汽车应用中电池的二次使用。这些电池仍可使用,并适用于限制性较小的条件,例如用于固定式和可再生能源的电池。因此,已经确定并进一步评估了可能的第二人生机会。在本文中,解释了锂离子电池的主要老化效应。接下来,将讨论不同的经过验证的电池模型的概述。最后,提出了一种用于评估二次生命应用中电池性能的方法。

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