Heating-cooperative Charging of Lithium-ion Batteries at Low Temperatures

Xiangfeng Meng, Xin Xu, Zhongbao Wei
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Abstract

The charging of lithium-ion batteries (LIBs) is remarkably slowed down at sub-zero environment due to the declined activity of electrochemical processes. This has been a major barrier of the further popularity of electric vehicles especially at cold regions. Motivated by this, this paper proposes a heating-cooperative charging strategy for lithium-ion batteries at low-temperature scenarios. An experimental-validated electro-thermal model is built to explain the coupling mechanism of heating and charging at low-temperatures conditions. On this premise, a multi-objective optimization problem is formulated regarding charging rapidity and energy loss. The dynamic programming (DP)-based solution virtually gives rise to a heating-cooperative charging strategy. Results show that the proposed strategy can adaptively regulate the heating/charging switching mode and the associated current magnitude to ensure the high-efficiency fast charging.
低温下锂离子电池的加热协同充电
在低温环境下,由于电化学过程的活性下降,锂离子电池(LIBs)的充电速度明显减慢。这一直是电动汽车进一步普及的主要障碍,尤其是在寒冷地区。基于此,本文提出了一种低温锂离子电池的加热协同充电策略。建立了一个经过实验验证的电热模型来解释低温条件下加热与充电的耦合机理。在此前提下,提出了一个考虑充电速度和能量损失的多目标优化问题。基于动态规划(DP)的解决方案实际上产生了一种加热-协同充电策略。结果表明,该策略能够自适应调节加热/充电切换方式和相关电流大小,保证了高效快速充电。
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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