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Overcurrent protection scheme of BMS for Li-Ion battery used in electric bicycles

机译:电动自行车用锂离子电池BMS的过电流保护方案

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摘要

Li-Ion batteries are widely used as the power source supplying the electric drive of electric bicycles. They are sensitive to the operation outside their recommended operating area, which could lead to shortened life-time, damage and explosion risk. A battery management system (BMS) is applied in order to monitor and to protect the battery from the abnormal conditions. In general, the commercial BMSs for Li-Ion batteries in electric bicycles typically focus on only the protection of the battery without consideration of other devices in the system, especially, the switching MOSFETs inside the converter. This paper presents the development of an overcurrent protection scheme for BMS which is capable of not only protecting the battery but also protecting other system components from damages. In addition, it can discriminate temporary fault currents so that unnecessary interrupted operations can be avoided. The developed scheme is designed based on the SOA of MOSFETs and the current-time characteristic of fuses. The proposed scheme was validated by experimental results.
机译:锂离子电池被广泛用作为电动自行车的电动驱动器供电的电源。他们对建议操作区域以外的操作很敏感,这可能会导致使用寿命缩短,损坏和爆炸危险。为了监视电池并保护电池免受异常情况的影响,应用了电池管理系统(BMS)。通常,用于电动自行车中锂离子电池的商用BMS通常只关注电池的保护,而不考虑系统中的其他设备,尤其是转换器内部的开关MOSFET。本文提出了针对BMS的过电流保护方案的开发,该方案不仅能够保护电池,还能够保护其他系统组件免受损坏。此外,它可以区分临时故障电流,从而避免不必要的中断操作。该开发方案是基于MOSFET的SOA和保险丝的电流-时间特性设计的。实验结果验证了该方案的有效性。

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