电池(电)
现象学模型
荷电状态
锂离子电池
计算机科学
热的
材料科学
机械工程
航程(航空)
功率(物理)
模拟
工程类
航空航天工程
物理
热力学
量子力学
作者
Ki‐Yong Oh,Nassim A. Samad,Youngki Kim,Jason B. Siegel,Anna G. Stefanopoulou,Bogdan I. Epureanu
标识
DOI:10.1016/j.jpowsour.2016.07.019
摘要
A novel phenomenological multi-physics model of Lithium-ion battery cells is developed for control and state estimation purposes. The model can capture electrical, thermal, and mechanical behaviors of battery cells under constrained conditions, e.g., battery pack conditions. Specifically, the proposed model predicts the core and surface temperatures and reaction force induced from the volume change of battery cells because of electrochemically- and thermally-induced swelling. Moreover, the model incorporates the influences of changes in preload and ambient temperature on the force considering severe environmental conditions electrified vehicles face. Intensive experimental validation demonstrates that the proposed multi-physics model accurately predicts the surface temperature and reaction force for a wide operational range of preload and ambient temperature. This high fidelity model can be useful for more accurate and robust state of charge estimation considering the complex dynamic behaviors of the battery cell. Furthermore, the inherent simplicity of the mechanical measurements offers distinct advantages to improve the existing power and thermal management strategies for battery management.
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