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Design Li-Po Battery Charger with Buck Converter under Partially CC-CV Method

机译:部分采用CC-CV方法设计具有降压转换器的锂聚合物电池充电器

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A battery is a device that can store electricity. After being used as an energy source, the battery will decrease its energy capacity, so it can return to its maximum capacity again after the battery is recharged. The method commonly used to charge a Lithium Polymer (Li-Po) battery is a constant current constant voltage that is by giving a constant current first and continuing a constant voltage under certain conditions. To get the desired voltage, the Li-Po battery can be arranged in series connection. Arrangement of the batteries in series causes the time to charge each cell to be unequal because after use, each cell will have a different voltage. This paper proposes a Li-Po battery charger that can be used for charging each cell of the battery individually so that it does not cause overcharging of the battery cell. This Li-Po charger requires a buck converter with the constant current, constant voltage method (CC-CV). From implementation results, the proportional integrator (PI) controller in the buck converter can produce a constant current and a constant voltage at the resistive load, if the battery has a current ripple of 10% at constant current. The full battery charging test shows different times for each cell, for cell 1 for 84 minutes, cell 2 for 92 minutes and cell 3 for 76 minutes, with an average efficiency of 88.3% for converter 1, converter 2 for 89, 4% and converter 3 at 89.3%.
机译:电池是可以存储电量的设备。用作能源后,电池将降低其能量容量,因此在给电池充电后可以再次返回其最大容量。通常为锂聚合物(Li-Po)电池充电的方法是恒定电流恒定电压,即先提供恒定电流,然后在某些条件下持续提供恒定电压。为了获得所需的电压,可以串联配置锂电池。串联布置的电池会使每个电池的充电时间不相等,因为在使用后,每个电池将具有不同的电压。本文提出了一种Li-Po电池充电器,该充电器可用于分别为电池的每个单元充电,以免引起电池单元的过度充电。这种锂聚合物充电器需要采用恒定电流,恒定电压方法(CC-CV)的降压转换器。根据实施结果,如果电池在恒定电流下的电流纹波为10%,则降压转换器中的比例积分器(PI)控制器可以在电阻负载下产生恒定电流和恒定电压。完整的电池充电测试显示每个电池的时间不同,电池1持续84分钟,电池2持续92分钟,电池3持续76分钟,转换器1的平均效率为88.3%,转换器2的平均效率为89%,电池2的平均效率为4%。转换器3的89.3%。

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