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A Fast Energy-efficient Pulse Preheating Strategy For Li-ion Battery At Subzero Temperatures

机译:零以下温度下锂离子电池的快速节能脉冲预热策略

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Electric vehicles suffer from significant driving range loss at subzero temperature environments due to reduced energy and power capability of Li-ion batteries. Therefore the battery must be heated to suitable operating temperature before the operation process begins. The effect of the pulse heating method based on the fuzzy logic control is investigated experimentally in this paper. Firstly, the pulse frequencies, amplitudes on cell temperature evolution are studied. Then the fuzzy logic control strategy is designed to obtain the variable pulse amplitude criterion based on the real-time internal resistance and temperature of the battery. The experiments are carried out under different battery initial values of state of charge with the same pulse frequency. Compared with the constant amplitude pulse preheating strategy, the proposed strategy can shorten the heating time by 2 to 4 minutes, and save the energy loss by 50 percent.
机译:由于锂离子电池的能量和功率容量降低,因此在低于零温度的环境中,电动汽车会遭受明显的行驶里程损失。因此,在操作过程开始之前,必须将电池加热到合适的操作温度。实验研究了基于模糊逻辑控制的脉冲加热方法的效果。首先,研究了脉冲频率,幅度对细胞温度变化的影响。然后,基于电池的实时内部电阻和温度,设计了模糊逻辑控制策略以获得可变的脉冲幅度准则。在具有相同脉冲频率的不同电池初始充电状态值下进行实验。与等幅脉冲预热策略相比,该方法可以将加热时间缩短2至4分钟,并节省50%的能量损失。

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