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A physically meaningful equivalent circuit network model of a lithium-ion battery accounting for local electrochemical and thermal behaviour, variable double layer capacitance and degradation

机译:一种物理上有意义的锂离子电池等效电路网络模型,考虑了局部电化学和热行为,可变双层电容和退化

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摘要

© 2016 Elsevier B.V.A novel electrical circuit analogy is proposed modelling electrochemical systems under realistic automotive operation conditions. The model is developed for a lithium ion battery and is based on a pseudo 2D electrochemical model. Although cast in the framework familiar to application engineers, the model is essentially an electrochemical battery model: all variables have a direct physical interpretation and there is direct access to all states of the cell via the model variables (concentrations, potentials) for monitoring and control systems design. This is the first Equivalent Circuit Network -type model that tracks directly the evolution of species inside the cell. It accounts for complex electrochemical phenomena that are usually omitted in online battery performance predictors such as variable double layer capacitance, the full current-overpotential relation and overpotentials due to mass transport limitations. The coupled electrochemical and thermal model accounts for capacity fade via a loss in active species and for power fade via an increase in resistive solid electrolyte passivation layers at both electrodes. The models capability to simulate cell behaviour under dynamic events is validated against test procedures, such as standard battery testing load cycles for current rates up to 20 C, as well as realistic automotive drive cycle loads.
机译:©2016 Elsevier B.V.提出了一种新颖的电路类比,可以在现实的汽车操作条件下对电化学系统进行建模。该模型是针对锂离子电池开发的,基于伪2D电化学模型。尽管在应用工程师熟悉的框架中进行铸造,但该模型实质上是电化学电池模型:所有变量都有直接的物理解释,并且可以通过模型变量(浓度,电势)直接访问电池的所有状态以进行监控系统设计。这是第一个等效电路网络类型的模型,可直接跟踪细胞内部物种的进化。它解释了复杂的电化学现象,这些现象通常在在线电池性能预测器中被忽略,例如可变的双层电容,全电流-超电势关系和由于传质限制而产生的超电势。耦合的电化学模型和热模型说明了由于活性物质损失而引起的容量衰减,以及由于两个电极处的电阻性固体电解质钝化层增加而引起的功率衰减。该模型在动态事件下模拟电池行为的能力已根据测试程序进行了验证,例如标准电池测试负载循环(最高电流为20 C)以及实际的汽车驾驶循环负载。

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