具有电池间变化的大型电池组的广义等效电路模型

Yaping Cai, Massimo Cancian, M. D’Arpino, G. Rizzoni
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引用次数: 14

摘要

大型电池组的一个关键问题是评估电池间变化对电池组/模块性能的影响的能力。电池参数的不均匀性主要是由于制造公差、电池退化和温度梯度,导致电池组中的电流和电压分布不平衡。本文提出了一种广义等效电路模型,该模型可以有效地估计电池组中单元/串之间的电流和电压差作为系统结构和参数的函数。该模型基于一个简化的等效电路模型,将健康细胞与受参数变化影响的细胞分离开来。所提出的方法已应用于几种包配置,通常用于汽车和航空航天应用,并且由于减少了计算工作量,因此对大规模系统具有很高的效益。该模型可用于电池组设计中对电池退化和热不平衡的影响进行估计。查找表可以用来描述电池组在稳态状态下的行为,并且可以被电池管理系统(BMS)用于在线估计电池的工作状态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A generalized equivalent circuit model for large-scale battery packs with cell-to-cell variation
A critical issue in large-scale battery pack is the capability of assessing the impact of cell-to-cell variation on the pack/module performance. The inhomogeneity of cell parameters is mainly due to manufacturing tolerances, cell degradation, and temperature gradients, and leads to unbalanced current and voltage distribution in the pack. In this paper, a generalized equivalent circuit model is proposed that effectively allows estimating the current and voltage differences between cells/strings in a pack as function of the system architecture and parameters. The model is based on a simplified equivalent circuit model that separates the healthy cells from the ones affected by parameters variation. The proposed methodology has been applied to several pack configurations, typically used for automotive and aerospace applications, and demonstrates high benefits for large scale systems due to the reduced computational effort. The proposed model can be used during the design of the battery pack for estimating the impact of degradation and thermal unbalance in a pack. Look-up-tables can be carried out to describe the behavior of battery pack at steady-state conditions and can be used by the Battery Management System (BMS) for on-line estimation of the operating conditions of the cells.
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