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Modelling the Degradation Process of Lithium-Ion Batteries When Operating at Erratic State-of-Charge Swing Ranges

机译:在不稳定的充电状态下操作时锂离子电池的降解过程

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Manufacturers of lithium-ion batteries inform capacity degradation for regular, symmetrical charge/discharge cycles, which is clearly problematic in real life applications where charge/discharge cycles are hardly regular. In this context, this paper presents a methodology that can model the degradation of lithium-ion batteries when these are charged and discharged erratically. The proposed methodology can model degradation of a lithium-ion battery type subject to erratic charge/discharge cycles where degradation data under symmetrical charge/discharge cycles (namely, under a standard protocol) has been provided by the manufacturer. To do so we use the concepts of (i) SOC swing, (ii) average swing range and (iii) Coulombic efficiency to model the degradation process in a simple manner through interpolation techniques. We use both deterministic and Monte Carlo simulations to obtain capacity degradation as a function of the number of cycles.
机译:锂离子电池制造商通知用于规则,对称充电/放电循环的容量劣化,在充电/放电循环几乎定期的现实生活中显然有问题。在这种情况下,本文提出了一种方法,可以在这些情况下模拟锂离子电池的劣化并且不正确放电。所提出的方法可以模拟锂离子电池类型的劣化,其经受不稳定的电荷/放电循环,其中制造商已经提供了对称充电/放电循环下的劣化数据(即,在标准方案下)。为此,我们使用(i)SOC SWING的概念,(ii)平均摆幅和(iii)库仑效率以简单的方式通过插值技术来模拟劣化过程。我们使用确定性和蒙特卡罗模拟来获得作为循环次数的函数的容量劣化。

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