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Assessing the potential of an electric vehicle hybrid battery system comprising solid-state lithium metal polymer high energy and lithium-ion high power batteries

机译:评估包含固态锂金属聚合物高能和锂离子高功率电池的电动汽车混合动力电池系统的潜力

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摘要

In this work the characterization and application of a prototype solid-state lithium metal battery for an electric vehicle application is addressed. This mid-temperature battery is operated at a temperature of 80 °C. In an innovative approach, this high energy technology is integrated into a hybrid battery system, where it is supported by a highest power lithium-titanate technology. Three hybrid battery system configurations are systematically derived for a high class vehicle with different performance requirements. On the basis of an overall vehicle simulation model, comprising a thermal model of the lithium metal polymer battery pack, the performance of the system is evaluated under regular and extreme driving conditions. The results indicate that battery hybridization makes a reasonable utilization of the lithium metal polymer battery in an electric vehicle possible. The power capability of the overall battery system in discharge as well as charge direction is significantly increased. Moreover, the system allows for a wider utilization of overall battery system's energy, resulting in an increase of drivable distance. Furthermore, additional functionalities of the hybrid battery system are discussed, such as warm-up procedure, low temperature performance enhancement and redundancy.
机译:在这项工作中,解决了用于电动汽车的固态锂金属原型电池的表征和应用。该中温电池在80°C的温度下工作。通过一种创新的方法,这项高能技术被集成到混合动力电池系统中,并由最高功率的钛酸锂技术提供支持。对于具有不同性能要求的高级车辆,系统地推导出了三种混合动力电池系统配置。基于整个车辆仿真模型,包括锂金属聚合物电池组的热模型,可以在常规和极端驾驶条件下评估系统的性能。结果表明,电池杂交使得锂金属聚合物电池在电动车辆中的合理利用成为可能。整个电池系统在放电以及充电方向上的功率能力都大大提高了。而且,该系统允许更广泛地利用整个电池系统的能量,从而导致可行驶距离的增加。此外,讨论了混合电池系统的其他功能,例如预热程序,低温性能增强和冗余。

著录项

  • 来源
    《Journal of Energy Storage》 |2018年第8期|175-184|共10页
  • 作者单位

    Corporate Sector Research and Advance Engineering, Robert Bosch GmbH;

    Corporate Sector Research and Advance Engineering, Robert Bosch GmbH;

    Electrochemical Energy Conversion and Storage Systems Group, Institute for Power Electronics and Electrical Drives (ISEA), RWTH Aachen University,Jülich Aachen Research Alliance, JARA-Energy,Institute for Power Generation and Storage Systems (PGS), E.ON ERC, RWTH Aachen University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hybrid battery system; Solid-state lithium metal polymer battery; Electric vehicle;

    机译:混合动力电池系统;固态锂金属聚合物电池;电动汽车;

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