首页> 外文会议>SAE World Congress Experience >Internal Cell Temperature Measurement and Thermal Modeling of Lithium Ion Cells for Automotive Applications by Means of Electrochemical Impedance Spectroscopy
【24h】

Internal Cell Temperature Measurement and Thermal Modeling of Lithium Ion Cells for Automotive Applications by Means of Electrochemical Impedance Spectroscopy

机译:通过电化学阻抗光谱法测定汽车应用锂离子电池的内部电池温度测量和热建模

获取原文

摘要

Battery safety is the most critical requirement for the energy storage systems in hybrid and electric vehicles. The allowable battery temperature is limited with respect to the battery chemistry in order to avoid the risk of thermal runaway. Battery temperature monitoring is already implemented in electric vehicles, however only cell surface temperature can be measured at reasonable cost using conventional sensors. The internal cell temperature may exceed the surface temperature significantly at high current due to the finite internal electrical and thermal cell resistance. In this work, a novel approach for internal cell temperature measurement is proposed applying on board impedance spectroscopy. The method considers the temperature coefficient of the complex internal cell impedance. It can be observed by current and voltage measurements as usually performed by standard battery management systems. The relevant frequency range considered for temperature measurements is chosen for high sensitivity and robust behavior and takes state of charge variations as well as aging effects into account. Transient temperature variations caused by various load profiles are analyzed in order to characterize the static and dynamic thermal properties of the cell. The resulting thermal equivalent model describes temperature changes inside the cell dependent on load current and ambient temperature. The temperature measurement approach and the thermal model are suitable for on board implementation in battery management systems. A dedicated battery excitation is not required, as signal components in the relevant frequency range are inherently present in typical driving current profiles. Thereby, significant improvements in terms of on-board diagnostics and battery safety can be achieved without any additional hardware effort.
机译:电池安全是混合动力和电动车中的能量存储系统最关键的要求。允许的电池温度相对于电池化学有限,以避免热失控的风险。电池温度监测已经在电动车辆中实现,但只能使用常规传感器以合理的成本测量细胞表面温度。由于有限的内部电气和热电池电阻,内部电池温度可能在高电流下显着超过表面温度。在这项工作中,提出了一种新型电池温度测量方法,施加在阻抗光谱上。该方法考虑复杂内部电池阻抗的温度系数。它可以通过标准电池管理系统通常执行的电流和电压测量来观察。选择了用于温度测量的相关频率范围,选择了高灵敏度和鲁棒行为,并考虑了充电变化以及老化效果。分析由各种负载型材引起的瞬态温度变化,以表征电池的静态和动态热性质。所得到的热量等效模型描述了依赖于负载电流和环境温度的电池内的温度变化。温度测量方法和热模型适用于电池管理系统中的船上。不需要专用电池激励,因为相关频率范围内的信号分量固有地存在于典型的驱动电流配置文件中。因此,在没有任何额外的硬件工作的情况下,可以实现在板载诊断和电池安全方面的显着改进。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号