Influence of Li-Ion Battery Models in the Sizing of Hybrid Storage Systems with Supercapacitors

C. Pinto, J. Barreras, R. de Castro, E. Schaltz, S. J. Andreasen, Rui Esteves Araújo
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引用次数: 12

Abstract

This paper presents a comparative study of the influence of different aggregated electrical circuit battery models in the sizing process of a hybrid energy storage system (ESS), composed by Li-ion batteries and supercapacitors (SCs). The aim is to find the number of cells required to propel a certain vehicle over a predefined driving cycle. During this process, three battery models will be considered. The first consists in a linear static zeroeth order battery model over a restricted operating window. The second is a non-linear static model, while the third takes into account first- order dynamics of the battery. Simulation results demonstrate that the adoption of a more accurate battery model in the sizing of hybrid ESS's prevents over-sizing, leading to a reduction in the number of cells of up to 29%, and a cost decrease of up to 10%.
锂离子电池模型对超级电容器混合储能系统尺寸的影响
本文比较研究了锂离子电池与超级电容器组成的混合储能系统(ESS)在定型过程中不同聚合电路电池模型的影响。其目的是找出在预定的行驶周期内驱动某一车辆所需的电池数量。在此过程中,将考虑三种电池型号。第一个包括一个线性静态零阶电池模型在一个有限的操作窗口。第二个模型是一个非线性静态模型,而第三个模型考虑了电池的一阶动力学。仿真结果表明,在混合ESS的尺寸中采用更精确的电池模型可以防止尺寸过大,从而减少高达29%的电池数量,并降低高达10%的成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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