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A maximum power point tracking technique for optimal Li-ion battery charging

机译:最大功率点跟踪技术可实现最佳锂离子电池充电

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Sinusoidal chargers use a DC-shifted sinusoidal current profile to charge the battery at a frequency at which the battery's AC impedance is minimum. In this paper, a new method is proposed for allocating and tracking the optimal charging frequency in real-time for lithium-ion (Li-ion) batteries for sinusoidal chargers. The proposed method is based on tracking the maximum power point of the charging power by auto-varying the charging frequency in order to get almost a unity battery input power factor. A high battery power factor means that the real power used for charging is large, which means that the impedance is almost purely resistive, while a low battery power factor means that the real power used for charging is low due to the high input impedance of the battery. Details on the proposed method followed with simulation results and experimental verification on a 3.8V, 2600mAh Samsung Li-ion battery cell are presented.
机译:正弦曲线充电器使用直流偏移的正弦曲线电流曲线,以电池的交流阻抗最小的频率为电池充电。本文提出了一种用于正弦充电器的锂离子(Li-ion)电池实时分配和跟踪最佳充电频率的新方法。所提出的方法基于通过自动改变充电频率来跟踪充电功率的最大功率点,从而获得几乎统一的电池输入功率因数。较高的电池功率因数意味着用于充电的有功功率很大,这意味着阻抗几乎是纯电阻性的;而较低的电池功率因数意味着由于电池的高输入阻抗而用于充电的有功功率很低。电池。介绍了所提出的方法的详细信息,并在3.8V,2600mAh三星锂离子电池上进行了仿真结果和实验验证。

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