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A Sine-Wave Heating Circuit for Automotive Battery Self-Heating at Subzero Temperatures

机译:用于SuboREM温度的汽车电池自加热正弦波加热电路

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摘要

Self-heating is of extreme importance for improving the available capacity and lifetime of lithium-ion batteries in cold climates. However, few attempts have been done to achieve effective onboard self-heating for the batteries in electric vehicles. This paper derives a high-frequency sine-wave (SW) heater based on resonant LC converters to self-heat the automotive batteries at low-temperatures without the need of external heaters. To be specific, an interleaved-parallel topology is introduced to double the heating speed without extra damages to batteries compared to the single heater. Further, a corresponding thermoelectric model is developed to provide guidance for the optimal design of the parameters in the proposed SW heater. Experimental results show that with a high-frequency sinusoidal current motivated by the proposed heater, lithium-ion batteries could be effectively self-heated by the ohmic-loss and electrochemical heat. Moreover, the heating time could be significantly shortened through decreasing the characteristic impedance or increasing the ac-heating frequency.
机译:自加热是极端重要的,可改善寒冷气候中的锂离子电池的可用容量和寿命。然而,已经完成了很少的尝试,以实现电动汽车电池的有效的船上自加热。本文源于谐振LC转换器的高频正弦波(SW)加热器,以在低温下自加热汽车电池而无需外部加热器。具体地,与单个加热器相比,引入了对电加热速度的加热速度加倍加热速度,以加倍加热速度。此外,开发了一种相应的热电模型以提供所提出的SW加热器中的参数的最佳设计的指导。实验结果表明,由于所提出的加热器的高频正弦波电流,锂离子电池可以通过欧姆损耗和电化学热加热。此外,通过降低特征阻抗或增加交流加热频率,可以显着缩短加热时间。

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