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Simplified Battery Pack Modeling Considering Inconsistency and Evolution of Current Distribution

机译:考虑到电流分布不一致和演化的简化电池组建模

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摘要

With the development of battery technology, large-scale battery applications are increasing. In order to obtain a higher current and voltage level and improve the overall energy efficiency, batteries are connected in series and parallel. Bulk model is the most used model to simulate battery packs, and the simulation results of single cell are enlarged several times to represent a battery pack. But bulk model ignores inconsistency between the batteries, and when the current magnification is large, such as in the extreme fast charge scenario, this neglect cannot reflect the current distribution inside the battery pack. Our paper proposes a simplify algorithm based on equivalent circuit model, which applied for non-uniform series and parallel-connected batteries. This simplification can greatly improve simulation speed while maintaining accuracy under the consideration of inconsistency. More importantly, this algorithm applies to any complex circuit, regardless of how many series-parallel structure layers. With the proposed algorithm, Monte Carlo simulations were evaluated to obtain the influence of battery series and parallel number and normal distribution parameters on current distribution. Simulation results show that an increase in the number of series will reduce the inconsistency of the current distribution, and an increase in the number of parallel and an increase in the relative standard deviation of the normal distribution of the battery parameters will increase the inconsistency of the current distribution.
机译:随着电池技术的发展,大型电池应用正在增加。为了获得更高的电流和电压电平,提高整体能效,电池串联连接并并联。批量模型是模拟电池组最常用的模型,单个电池的仿真结果达到几次以表示电池组。但是批量模型忽略了电池之间的不一致,当电流放大大量大,例如在极端快速充电场景中,这种忽略不能反映电池组内的电流分布。我们的论文提出了一种基于等效电路模型的简化算法,施加了非均匀系列和并联电池。这种简化可以大大提高模拟速度,同时在考虑不一致时保持精度。更重要的是,该算法适用于任何复杂电路,无论有多少串行平行结构层。利用所提出的算法,评估蒙特卡罗模拟,以获得电池系列和并联数和正态分布参数对电流分布的影响。仿真结果表明,序列数量的增加将降低电流分布的不一致,并且电池参数正常分布的平行数量和增加的相对标准偏差的增加将增加不一致的电流分布。

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