Simultaneous Estimation of Multiple Thermal Parameters of Large-Format Laminated Lithium-Ion Batteries

Jianbo Zhang, Bin Wu, Zhe Li, Jun Huang
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引用次数: 4

Abstract

In-situ determinationof the thermal parameters for lithium-ion batteries is important yet challenging. This paper presents and validates a method to simultaneously estimate multiple thermal parameters for large-format laminated lithium-ion batteries. In this method, a circular planar heater was attachedat the center of the battery surface while the temperature responses at multiple strategically chosen locations were recorded with thermocouples. The heat conduction was modeled based on a two-dimensional axially-symmetric model containing heat capacity, thermal conductivities, and interfacial thermal conductance. These thermal parameters were tuned till the differences between the simulated and measured temperatures reached the minimum using optimization techniques. The estimated heat capacityagreed wellwith the result measuredwith an accelerating rate calorimeter. Theproposed methodcanalso be usedto estimate the thermal parameters of other devices/structures consisting of a covering outside and heterogeneousmaterials inside.
大尺寸层压锂离子电池多个热参数的同时估计
锂离子电池热参数的原位测定既重要又具有挑战性。提出并验证了一种同时估计大尺寸层压锂离子电池多个热参数的方法。在该方法中,在电池表面的中心放置一个圆形平面加热器,并用热电偶记录多个策略选择位置的温度响应。热传导基于二维轴对称模型,包含热容、导热系数和界面导热系数。这些热参数被调整,直到模拟和测量温度之间的差异达到最小使用优化技术。估计的热容与用加速量热计测量的结果吻合得很好。所提出的方法也可用于估计由外部覆盖和内部非均质材料组成的其他器件/结构的热参数。
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