电动汽车用有源电池对电池平衡系统的研制

E. Leksono, Irsyad Nashirul Haq, E. Juliastuti, Lalu Ghifarul Zaky Fahran, Fahri Muhamad Nabhan
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引用次数: 3

摘要

到目前为止,电动汽车的发展非常迅速。这是由燃油汽车向电力汽车的转变、日益普及的电动汽车的发展以及越来越便宜的电池的生产所支持的。一般使用的电池是锂离子电池。但随着时间的推移,锂离子电池的质量会下降,使电池的质量不早于其使用。电池退化的原因是电池组中的电池不平衡。为了克服这个问题,需要一个可靠的电池管理系统(BMS)。在BMS的设计中,为了防止电池电压的不平衡,建议采用电池间有源的方法。BMS使用微处理器处理电池数据,微控制器控制电池连接开关,DC-DC转换电路以及开关电容器(SC)。从所提出的设计来看,BMS能够直接监测每个电池的电压,能够将自动数据存储在微处理器的数据库中,能够设置最高电压电池与最低电压电池之间连接的开关,能够平衡电池之间的电压差高达0.0032 V,能够将电池组的容量增加到130 mAh与没有平衡系统的系统相比。与无平衡系统相比,平衡系统可使电池组的能量提高到10.363 Wh或6.88%。
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Development of Active Cell To Cell Battery Balancing System for Electric Vehicle Applications
As of right now the development of electric vehicles is very rapid. This is supported by the transition from vehicles with fuel oil to electricity, the development of increasingly widespread electric vehicles, and the production of increasingly cheap batteries. Generally, the battery used is a lithium-ion battery. But over time, the quality of the lithiumion battery will be degraded so that the battery quality is not as early as its use. The causes of battery degradation are unbalanced cell in the battery pack. T o overcome this problem, a reliable battery management system (BMS) is needed. In the design of the BMS to prevent the unbalance of the proposed battery voltage using the active method from cell to cell battery. BMS uses a microprocessor to process battery data, a microcontroller to control battery connecting switches, and a DC-DC converter circuit as well as a switched capacitor (SC). From the proposed design BMS is able to monitor the voltage of each battery directly, able to store automatic data on the database in the microprocessor, able to set the switch connected between the highest voltage battery to the lowest voltage battery, able to balance the battery with a voltage difference between batteries up to 0.0032 V, able to increase the capacity of the battery pack compared to the system without a balancing system up to 130 mAh, and the balancing system can increase the energy of the battery pack compared to the system without a balancing system to 10.363 Wh or 6.88%.
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