用于锂离子电池低温预热的高效谐振推挽式交流加热器

Jae-Sang Kim, Keon-Woo Kim, Juhyun Bae, Sung-Pyo Cheon, G. Moon
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引用次数: 1

摘要

锂离子电池在低温环境下充放电存在严重问题,目前正在积极开展电池预热方法来解决这一问题。利用电池内阻欧姆损耗的内部加热方法无需外部电源,可通过车载自加热器实现,适用于电动汽车或便携式设备。提出了一种新型谐振推挽式交流加热器。所提出的加热器通过将谐振电容并联到开关上来减少电压应力和开关损耗。此外,它的体积小,可以实现电池的“全天候加热”,而不需要交错结构。为了验证所提出的交流加热器的有效性,进行了8串2并联18650型锂离子电池从- 20°C预热到0°C的实验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High-Efficiency Resonant Push-Pull AC Heater for Lithium-Ion Battery Pre-heating at Low Temperature
Lithium-ion batteries suffer from serious problems in charging and discharging in a low-temperature environment, and battery pre-heating methods are being actively conducted to solve this problem. The internal heating method which uses the ohmic loss of the battery internal resistance can be implemented with an on-board self-heater without an external power source, and is suitable for electric vehicles or portable devices. This paper proposes a new resonant push-pull AC heater. The proposed heater reduces voltage stress and switching loss by connecting a resonant capacitor to the switch in parallel. In addition, it has a small volume as it can achieve ’all-time heating’ of a battery without an interleaving structure. In order to verify the effectiveness of the proposed AC heater, an experiment was performed to preheat a lithium-ion battery of 8 series-2 parallel 18650 type from −20°C to 0°C.
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