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首页> 外文期刊>Journal of advanced transportation >State-of-Charge Estimation and Active Cell Pack Balancing Design of Lithium Battery Power System for Smart Electric Vehicle
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State-of-Charge Estimation and Active Cell Pack Balancing Design of Lithium Battery Power System for Smart Electric Vehicle

机译:智能电动汽车锂电池电源系统的荷电状态估计和有源电池组平衡设计

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This paper presents an integrated state-of-charge (SOC) estimation model and active cell balancing of a 12-cell lithium iron phosphate (LiFePO4) battery power system. The strong tracking cubature extended Kalman filter (STCEKF) gave an accurate SOC prediction compared to other Kalman-based filter algorithms. The proposed groupwise balancing of the multiple SOC exhibited a higher balancing speed and lower balancing loss than other cell balancing designs. The experimental results demonstrated the robustness and performance of the battery when subjected to current load profile of an electric vehicle under varying ambient temperature.
机译:本文提出了一个集成的充电状态(SOC)估计模型和12芯磷酸铁锂(LiFePO4)电池电源系统的有源电池平衡。与其他基于卡尔曼的滤波器算法相比,强大的跟踪库扩展卡尔曼滤波器(STCEKF)提供了准确的SOC预测。与其他电池单元平衡设计相比,建议的多SOC分组平衡显示出更高的平衡速度和更低的平衡损失。实验结果证明了在变化的环境温度下,当经受电动车辆的电流负载曲线时,电池的耐用性和性能。

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