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Drive circuitry of an electric vehicle enabling rapid heating of the battery pack at low temperatures

机译:电动汽车的驱动电路使电池组在低温下能够快速加热

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摘要

Heating battery at low temperatures is fundamental to avoiding the range anxiety and the time-consuming charging associated with electric vehicles (EVs). One method for achieving fast and uniform battery heating is to polarize the cell under pulse currents. However, the on-board implementation of this method leads to an increase in the cost and size. Therefore, in this study, an adapted EV circuitry compatible with the existing one and an optimized operating condition are proposed to enable rapid battery heating. With this circuit, electricity transfer between the cells can be realized through a motor, leading to remarkably higher battery currents than those of the conventional circuit. The increase in the maximum heating currents (from 1.41C to 4C) resulted in a battery temperature rise of 8.6°C/min at low temperatures. This heating method exhibits low cost, high efficiency, and negligible effects on battery degradation, practical and promising on battery heating of EVs.
机译:在低温下加热电池是避免焦虑和与电动车辆相关的耗时充电(EVS)的基础。实现快速和均匀电池加热的一种方法是在脉冲电流下偏振电池。但是,该方法的车载实施导致成本和尺寸的增加。因此,在本研究中,提出了一种与现有的EV电路和优化的操作条件兼容,以实现快速的电池加热。利用该电路,可以通过电动机实现电池之间的电力转移,导致比传统电路的电流高的电池电流。最大加热电流(从1.41℃至4℃)的增加导致在低温下电池温度升高为8.6℃/ min。这种加热方法表现出低成本,高效率,对电池劣化,实用和对EVS电池加热有前途的影响。

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