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Calendar aging of commercial graphite/LiFePO_4 cell - Predicting capacity fade under time dependent storage conditions

机译:商用石墨/ LiFePO_4电池的日历老化-预测时间依赖性存储条件下的容量衰减

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摘要

In applications such as electrical transportation, most of the battery life is spent under storage. Understanding and estimating aging under storage, also named as calendar aging, is therefore a prerequisite for cell life prediction. This work investigates aging behavior upon storage of a commercial 15 Ah lithium-ion graphite/iron phosphate cell. Performance decline during 450 days of storage under nine stationary conditions is analyzed using non-destructive electrochemical tests. Temperature is found to be more detrimental than State of Charge (SoC). Most often, degradation models express the accumulated degradation with respect to time and aging conditions. In this article, a simple modeling approach is proposed focusing on the degradation rate to predict capacity fade. This permits predicting cell degradation under time dependent storage conditions (SoC and temperature) which are usually experienced in real applications. Model prediction is compared to experimental calendar aging data obtained over 625 days in a controlled time dependent temperature storage conditions. Predictions are in good agreement with experimental results as the absolute error on capacity prediction never exceeds 3% over 400 days and 5% over 625 days.
机译:在诸如电力运输的应用中,大部分电池寿命是在存储下花费的。因此,了解和估计存储中的老化(也称为日历老化)是预测电池寿命的先决条件。这项工作研究了商用15 Ah锂离子石墨/磷酸铁电池在存储时的老化行为。使用无损电化学测试分析了在九种固定条件下450天储存期间的性能下降。发现温度比荷电状态(SoC)更有害。最常见的是,退化模型表示相对于时间和老化条件的累积退化。在本文中,提出了一种简单的建模方法,重点放在退化率上以预测容量衰减。这样可以预测在实际应用中通常会遇到的随时间变化的存储条件(SoC和温度)下的电池性能下降。将模型预测与在受控时间相关的温度存储条件下经过625天获得的实验日历老化数据进行比较。预测与实验结果非常吻合,因为容量预测的绝对误差在400天内不会超过3%,在625天不会超过5%。

著录项

  • 来源
    《Journal of power sources》 |2014年第1期|450-458|共9页
  • 作者单位

    Laboratory for Electrical Storage (CEA/LSE), CEA-UTEN-DTS, 73377 Le-Bourget-du-Lac, France,LUSAC ESIX Normandie rue Louis Aragon, 50130 Cherbourg-Octeville, France;

    Laboratory for Electrical Storage (CEA/LSE), CEA-UTEN-DTS, 73377 Le-Bourget-du-Lac, France;

    LUSAC ESIX Normandie rue Louis Aragon, 50130 Cherbourg-Octeville, France;

    DREAM/DELT A/68580, TCR LAB 012, 1, Avenue du Golf, 78288 Cuyancourt Cedex, France;

    IFP Energies Nouvelles, Etablissement de Lyon, BP 3, 69360 Solaize, France;

    IFP Energies Nouvelles, Etablissement de Lyon, BP 3, 69360 Solaize, France;

    IFSTTAR/LTE, Cite des Mobilites, 25 Av Francois Mitterrand, 69675 Bron, France;

    IFSTTAR/LTE, Cite des Mobilites, 25 Av Francois Mitterrand, 69675 Bron, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Li-ion battery aging; C/LiFePO_4; Storage; Capacity fade experimental data; Capacity fade model; Time varying environment;

    机译:锂离子电池老化;C / LiFePO_4;存储;容量衰减实验数据;容量衰减模型;时变环境;

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