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Mesoscopic modeling and parameter estimation of a lithium-ion battery based on LiFePO_4/graphite

机译:基于LiFePO_4 /石墨的锂离子电池介观建模与参数估计

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摘要

A novel numerical model for simulating the behavior of lithium-ion batteries based on LiFePO4(LFP)/graphite is presented. The model is based on the modified Single Particle Model (SPM) coupled to a mesoscopic approach for the LFP electrode. The model comprises one representative spherical particle as the graphite electrode, and N LFP units as the positive electrode. All the SPM equations are retained to model the negative electrode performance. The mesoscopic model rests on non-equilibrium thermodynamic conditions and uses a non-monotonic open circuit potential for each unit. A parameter estimation study is also carried out to identify all the parameters needed for the model. The unknown parameters are the solid diffusion coefficient of the negative electrode (D-s,D-n), reaction-rate constant of the negative electrode (K-n), negative and positive electrode porosity (epsilon(n)&(n)), initial State-Of-Charge of the negative electrode (SOCn,0), initial partial composition of the LFP units (y(k,0)), minimum and maximum resistance of the LFP units (R-min&R-max), and solution resistance (R-cell). The results show that the mesoscopic model can simulate successfully the electrochemical behavior of lithium-ion batteries at low and high charge/discharge rates. The model also describes adequately the lithiation/delithiation of the LFP particles, however, it is computationally expensive compared to macro-based models.
机译:提出了一种基于LiFePO4(LFP)/石墨的模拟锂离子电池行为的新型数值模型。该模型基于修改后的单粒子模型(SPM),该模型与LFP电极的介观方法耦合。该模型包括一个代表性的球形粒子作为石墨电极,N个LFP单元作为正电极。保留所有SPM方程以对负极性能进行建模。介观模型基于非平衡热力学条件,并且对每个单元使用非单调开路电势。还进行了参数估计研究,以识别模型所需的所有参数。未知参数是负极的固体扩散系数(Ds,Dn),负极的反应速率常数(Kn),负极和正极的孔隙率(epsilon(n)&(n)),初始状态-负极的电荷(SOCn,0),LFP单元的初始部分组成(y(k,0)),LFP单元的最小和最大电阻(R-min&R-max)和溶液电阻(R-细胞)。结果表明,介观模型可以成功地模拟锂离子电池在低和高充电/放电速率下的电化学行为。该模型还充分描述了LFP颗粒的锂化/去锂化,但是与基于宏的模型相比,它的计算量很大。

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