Simulation Analysis of Inconsistency of Series-connected Batteries under Constant Current Condition

Xu Chen, Xiangdong Li, Shuvu Jin, Saihan Chen, Jinlei Sun
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Abstract

Lithium battery (LiB) is widely used in electric vehicles (EVs), energy storage power stations and other fields. because of its high voltage, light weight, high energy density, good cycle performance, low self discharge rate and no memory effect, less environmental pollution and other significant advantages. However, due to the limited voltage and capacity of battery cells, battery is usually used as a battery pack composed of hundreds of single cells in parallel or series, The difference between batteries not only affect the charging and discharging capacity of batteries, but also lead to battery aging and potential safety problems. It is of great significance to study the influence of the differences between cells on the battery pack for battery grouping and battery balancing. This paper takes the coupling relationship among the initial state of charge (SOC), initial capacity and initial internal resistance into consideration, and establishes the relationship between the initial parameters. A model consists six cells connected in series is established based on the Rint equivalent circuit model, and simulations under different working conditions are conducted. The simulation results show that the consistency of the capacity of battery pack is mainly affected by the initial SOC and initial capacity. The influence of the two factors on capacity of battery pack consistency under different charging current rates is different. The initial internal resistance has little effect on capacity consistency under different charging current rates.
恒流条件下串联电池不一致性仿真分析
锂电池(LiB)广泛应用于电动汽车(ev)、储能电站等领域。因其具有电压高、重量轻、能量密度高、循环性能好、自放电率低、无记忆效应、环境污染少等显著优点。然而,由于电池单体的电压和容量有限,电池通常是由数百个单体电池并联或串联组成的电池组,电池之间的差异不仅影响电池的充放电能力,还会导致电池老化和潜在的安全问题。研究电芯之间的差异对电池组的影响,对于电池分组和电池平衡具有重要意义。本文考虑了初始荷电状态(SOC)、初始容量和初始内阻之间的耦合关系,建立了初始参数之间的关系。基于Rint等效电路模型,建立了6个单元串联的模型,并进行了不同工况下的仿真。仿真结果表明,电池组容量一致性主要受初始荷电状态和初始容量的影响。在不同充电电流下,这两个因素对电池组一致性容量的影响是不同的。在不同充电电流下,初始内阻对容量一致性影响不大。
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