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Real-time optimal fast charging of Li-ion batteries with varying temperature and charging behaviour constraints

机译:具有不同温度和充电行为约束的锂离子电池的实时最佳快速充电

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摘要

To expand the adoption of battery-operated portable consumer products and reduce the fear of running out of charge, the manufacturers and researchers have developed various health-aware fast-charging protocols. However, the different health-conscious fast charging algorithms only generates a pre-defined charging profile based on initial operating boundary conditions without having the option of real-time controls. In this work, a real-time optimal fast charging protocol is implemented by using Pontryagin's Minimum Principle (PMP) to solve the optimal control framework having a trade-off between charging time and ohmic heat generation. Modifying the control concepts of costate jump conditions and from extensive offline optimization results, the real-time optimal fast charging protocol is examined for varying operating constraints. The effect of different boundary conditions, mainly due to charging behaviours, on the charging profile and other sensitive parameters are also investigated and compared with a standard CCCV charging algorithm. Finally, the comparison between a typical optimal fast charging profile and a standard 2C CCCV protocol is experimentally examined.
机译:为了扩大采用电池供电的便携式消费产品,并减少欠费用的恐惧,制造商和研究人员已经开发出各种健康感知的快速充电协议。然而,不同的健康有意识的快速充电算法仅基于初始操作边界条件生成预定的充电轮廓,而不具有实时控制。在这项工作中,通过使用Pontryagin的最低原理(PMP)来实现实时最佳快速充电协议,以解决充电时间和欧姆发热之间具有折衷的最佳控制框架。修改耗时率跳转条件的控制概念,并从广泛的离线优化结果,检查实时最佳快速充电协议以进行不同的操作约束。还研究了不同边界条件的影响,主要是由于充电曲线和其他敏感参数的充电行为,并与标准CCCV充电算法进行了比较。最后,通过实验检查典型的最佳快速充电曲线与标准2C CCCV协议之间的比较。

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