低温下锂离子电池的协同加热与快速充电

Xin Xu, Zhongbao Wei, Liang Du
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引用次数: 0

摘要

锂离子电池(LIBs)在低温下的低活性是未来电动汽车普及的重要障碍。低温充电比常温充电耗时更长,甚至会对锂电池造成不可逆的损伤。基于此,本文提出了一种基于电热模型的协同充电方法。特别地,建立了一个电-热耦合模型,并验证了该模型在宽温度范围内准确再现了电池动力学。在此前提下,针对低温快速充电,采用动态规划(DP)算法优化LIB的加热与充电协同。结果表明,充电和加热过程可以相互促进,以实现电池的快速加油。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synergized Heating and Fast Charging for Lithium-Ion Batteries at Low Temperatures
Low activity of Lithium-ion batteries (LIBs) at low temperatures is an essential barrier for the future popularity of electric vehicles. Low-temperature charging of LIB consumes much longer time than that at normal temperature, and even induces irreversible damage to the LIB. Motivated by this, an electrical-thermal model-based synergized charging method is proposed in this paper. In particular, a coupled electrical-thermal model is built and validated for accurately reproducing the battery dynamics within a wide temperature range. On this premise, the dynamic programming (DP) algorithm is employed to synergize the heating and charging of LIB optimally regarding the fast charging at low temperatures. Results suggest that the charging and heating processes can promote each other to achieve a fast refueling of the battery.
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