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Fast charging for electric vehicles applications: Numerical optimization of a multi-stage charging protocol for lithium-ion battery and impact on cycle life

机译:电动汽车的快速充电应用:用于锂离子电池的多级充电方案的数值优化及对循环寿命的影响

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摘要

One challenge of fast charging for electric vehicles is the potential degradation caused by high charge currents on the battery. This article focuses on the numerical optimization of fast charging protocols and on their impact on battery cycle life. An optimization problem is formulated to define the parameters of a multi-stage of constant current charging protocol. The problem is based on a strongly coupled electro-thermal model and is developed to achieve fast charging while taking aging into account in an implicit manner.The proposed method is used to define optimized protocols in different operating conditions in terms of ambient temperature, charging time, and charged capacity. Experimental aging tests are then conducted to investigate their impact on the cycle life of a lithium-ion cell. Optimized protocols are compared with fast charging reference protocols in similar operating conditions. The results show that the optimized protocols can reduce the charging time and/or the degradation compared to the reference protocols. This indicates that there exist opportunities for significantly higher currents to reduce battery charging time while still maintaining a long cycle life.
机译:电动车辆快速充电的一个挑战是电池上的高电荷电流引起的潜在劣化。本文重点介绍了快速充电协议的数值优化及其对电池循环寿命的影响。配制优化问题以定义恒流充电协议的多级参数。该问题基于强耦合的电热模型,并且开发以实现以隐含的方式进行老化的同时实现快速充电。所提出的方法用于在环境温度下在不同操作条件下定义优化的协议,充电时间和充电能力。然后进行实验衰老试验以研究它们对锂离子电池的循环寿命的影响。将优化的协议与类似操作条件中的快速充电参考协议进行比较。结果表明,与参考协议相比,优化的协议可以减少充电时间和/或降级。这表明有机会对于显着更高的电流,以降低电池充电时间,同时仍然保持长循环寿命。

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