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首页> 外文期刊>Journal of power sources >Modelling and experimental evaluation of parallel connected lithium ion cells for an electric vehicle battery system
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Modelling and experimental evaluation of parallel connected lithium ion cells for an electric vehicle battery system

机译:电动汽车电池系统并联锂离子电池的建模和实验评估

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摘要

Variations in cell properties are unavoidable and can be caused by manufacturing tolerances and usage conditions. As a result of this, cells connected in series may have different voltages and states of charge that limit the energy and power capability of the complete battery pack. Methods of removing this energy imbalance have been extensively reported within literature. However, there has been little discussion around the effect that such variation has when cells are connected electrically in parallel. This work aims to explore the impact of connecting cells, with varied properties, in parallel and the issues regarding energy imbalance and battery management that may arise. This has been achieved through analysing experimental data and a validated model. The main results from this study highlight that significant differences in current flow can occur between cells within a parallel stack that will affect how the cells age and the temperature distribution within the battery assembly. (C) 2016 The Authors. Published by Elsevier B.V.
机译:电池性能的变化是不可避免的,并且可能由制造公差和使用条件引起。结果,串联连接的电池单元可能具有不同的电压和充电状态,从而限制了整个电池组的能量和功率容量。文献中已广泛报道了消除这种能量失衡的方法。然而,围绕电池并联电连接时这种变化产生的影响的讨论很少。这项工作旨在探讨并联连接具有不同特性的电池的影响,以及可能出现的有关能量不平衡和电池管理的问题。这是通过分析实验数据和经过验证的模型来实现的。这项研究的主要结果表明,并联堆中的电池之间可能会出现电流差异,这将影响电池的老化方式以及电池组件中的温度分布。 (C)2016作者。由Elsevier B.V.发布

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