Enhanced electrical model of Lithium-based batteries accounting the charge redistribution effect

M. Bahramipanah, D. Torregrossa, R. Cherkaoui, M. Paolone
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引用次数: 24

Abstract

Within the context of the electrical circuit modeling of batteries, this paper proposes an improvement of the most common electric equivalent circuit used for Lithium cells. The main improvement is based on the modeling of the so-called charge redistribution phenomenon that characterizes the dynamic voltage during charging/discharging and relaxation phases. In particular, the aim of the paper is to prove that the model recently proposed by the Authors to represent the same phenomenon in supercapacitors, can be extended also to Lithium batteries. The proposed model is validated by means of experimental results carried out on a 30 Ah 2.3 V Lithium-Titanate cell with reference to different charge/discharge cycles.
考虑电荷再分配效应的锂基电池增强电学模型
在电池电路建模的背景下,本文提出了对锂电池最常用的等效电路的改进。主要的改进是基于所谓的电荷再分配现象的建模,该现象表征了充放电和弛豫阶段的动态电压。特别是,本文的目的是证明作者最近提出的代表超级电容器中相同现象的模型也可以扩展到锂电池中。在30 Ah 2.3 V钛酸锂电池上进行了不同充放电周期的实验,验证了模型的正确性。
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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