锂离子电池的VHDL-AMS电热建模

H. Machado, L. Cicero, C. Tanougast, H. Ramenah, L. Siéler, P. Jean, P. Milhas, A. Dandache
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引用次数: 6

摘要

锂离子可充电电池在不使用时具有有用的能量,低电池效应和缓慢的自放电损耗。在本文中,我们描述了一个描述锂离子电池的耦合电和热行为的VHDL-AMS模型。该模型依赖于利用高效、低成本的试验台对真实特征参数进行实验提取。因此,它允许通过考虑锂离子电池的充电状态和加热状态来预测实际电压变化,以便根据当前电气应用所需的容量和电力设计电池系统。
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VHDL-AMS electro-thermal modeling of a lithium-ion battery
Li-ion rechargeable batteries present an useful energy, low battery effect, and slow Self-discharge loss of charge when not in use. In this paper, we describe a VHDL-AMS model describing coupled electrical and thermal behaviors of a Li-Ion cell. This model relies on the experimental extraction of real characteristic parameters by using an efficient and low-cost test bench. Therefore, it allows to predict the realistic voltage variations by taking into account the state of charge and heating of the Li-ion cell, in order to design a battery system according the required capacity and electric power for the current electrical applications.
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