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Research on the Capacity of Li-ion Battery Packer Based on Capacity Incremental Curve

机译:基于容量增量曲线的锂离子电池包装机容量研究

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摘要

Lithium ion battery is the most widely used and reliable power source for electric vehicles. With the development of electric vehicles, the safety, energy density, life and reliability of lithium ion batteries have been continuously improved. However, in the field of vehicle power battery technology, battery monomers are combined in series and parallel to provide enough energy, but one of the major problems faced by group batteries is the consistency between battery monomers. Taking the capacity increment curve (IC curve) of lithium iron phosphate battery as the analysis tool, it is found that the characteristic peak of IC curve of different monomers in battery pack can reflect the relationship of monomer capacity. On this basis, the mathematical model is established, and the IC curve II peak characteristic point of a single cell are used as the reference to characterize the capacity of the single cell one by one. The results show that the method can be used in the normal charging process of the battery pack, and the capacity of the single cell in the battery pack can be characterized in real time during the whole life of the battery pack. It has certain research value for the ladder utilization and accurate management of battery pack.
机译:锂离子电池是电动车辆最广泛使用和可靠的电源。随着电动汽车的发展,锂离子电池的安全性,能量密度,寿命和可靠性持续改善。然而,在车辆动力电池技术领域,电池单体串联并平行于提供足够的能量,但组电池面临的主要问题之一是电池单体之间的一致性。采用锂铁磷酸盐电池的容量增量曲线(IC曲线)作为分析工具,发现电池组中不同单体的IC曲线的特征峰可以反映单体容量的关系。在此基础上,建立了数学模型,并且单个电池的IC曲线II峰值特征点作为表征单个电池的容量的参考。结果表明,该方法可用于电池组的正常充电过程中,并且电池组中的单个电池的容量可以在电池组的整个寿命期间实时表征。它对电池组的梯形利用和准确管理有一定的研究价值。

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