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Optimization of charging strategy for lithium-ion battery packs based on complete battery pack model

机译:基于完整电池组模型的锂离子电池组充电策略优化

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摘要

This study focuses on a charging strategy for battery packs, as battery pack charge control is crucial for battery management system. First, a single-battery model based on electrothermal aging coupling is proposed; subsequently, a battery pack cooling model and battery pack equilibrium management model are combined to form a complete battery pack model that describes the state parameters of the battery pack and the interaction between the individual batteries in the battery pack. Then, a multi-objective optimal charging strategy considering charging time, aging, and energy loss is proposed, and the equilibrium management, temperature, and battery parameters are restricted. A genetic algorithm method was used to optimize the adaptive multi-phase constant-current constant-voltage charging strategy. A fast charging strategy based on the shortest charging time is proposed. The results show that the fast charging strategy can significantly reduce charging time but leads to aging and increases energy loss. The contradictory relation between charging time and aging and the interaction between charging time and energy loss are revealed. The balance optimization charging strategy appears on the left side of the Pareto curve. Finally, a balanced charging strategy considering charging time, aging, and energy loss is obtained. In comparison with single batteries with the same average initial current charging, the constant current phase order decreases because of battery pack state parameters and equilibrium management, resulting in different charging strategies.
机译:本研究专注于电池组的充电策略,因为电池组电荷控制对于电池管理系统至关重要。首先,提出了一种基于电热老化耦合的单电池模型;随后,组合电池组冷却模型和电池组平衡管理模型以形成一个完整的电池组模型,该模型描述了电池组的状态参数和电池组中各个电池之间的相互作用。然后,提出了考虑充电时间,老化和能量损失的多目标最佳充电策略,并且限制了平衡管理,温度和电池参数。遗传算法方法用于优化自适应多相恒流恒压充电策略。提出了一种基于最短充电时间的快速充电策略。结果表明,快速充电策略可以显着降低充电时间,但导致老化并提高能量损失。揭示了充电时间和老化与充电时间与能量损失之间的相互作用之间的矛盾关系。平衡优化充电策略出现在Pareto曲线的左侧。最后,获得了考虑充电时间,老化和能量损失的平衡充电策略。与具有相同平均初始电流充电的单电池相比,由于电池包装状态参数和平衡管理,恒定电流阶段顺序减少,导致不同的充电策略。

著录项

  • 来源
    《Journal of Energy Storage》 |2021年第5期|102466.1-102466.16|共16页
  • 作者单位

    Key Laboratory of Low-Grade Energy Utilization Technologies and Systems Chongqing University Ministry of Education Chongqing 400044 PR China|School of Energy and Power Engineering Chongqing University Chongqing 400044 PR China;

    Key Laboratory of Low-Grade Energy Utilization Technologies and Systems Chongqing University Ministry of Education Chongqing 400044 PR China|School of Energy and Power Engineering Chongqing University Chongqing 400044 PR China;

    School of Automotive Engineering Chongqing University Chongqing 400044 PR China;

    Key Laboratory of Low-Grade Energy Utilization Technologies and Systems Chongqing University Ministry of Education Chongqing 400044 PR China|School of Energy and Power Engineering Chongqing University Chongqing 400044 PR China;

    Key Laboratory of Low-Grade Energy Utilization Technologies and Systems Chongqing University Ministry of Education Chongqing 400044 PR China|School of Energy and Power Engineering Chongqing University Chongqing 400044 PR China;

    School of Automotive Engineering Chongqing University Chongqing 400044 PR China;

    School of Automotive Engineering Chongqing University Chongqing 400044 PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Battery pack model; Battery thermal management; Lithium-ion battery; Multi-objective optimization charging;

    机译:电池组型;电池热管理;锂离子电池;多目标优化充电;

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