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Adaptive Distributed Laser Charging for Efficient Wireless Power Transfer

机译:自适应分布式激光充电,实现高效的无线功率传输

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Distributed laser charging (DLC) is a wireless power transfer technology for mobile electronics. Similar to traditional wireless charging systems, the DLC system can only provide constant power to charge a battery. However, Li-ion battery needs dynamic input current and voltage, thus power, in order to optimize battery charging performance. Therefore, neither power transmission efficiency nor battery charging performance can be optimized by the DLC system. We at first propose an adaptive DLC (ADLC) system to optimize wireless power transfer efficiency and battery charging performance. Then, we analyze ADLC's power conversion to depict the adaptation mechanism. Finally, we evaluate the ADLC's power conversion performance by simulation, which illustrates its efficiency improvement by saving at least 60.4% of energy, comparing with the fixed-power charging system.
机译:分布式激光充电(DLC)是一种用于移动电子设备的无线电力传输技术。与传统的无线充电系统类似,DLC系统只能提供恒定的功率来为电池充电。但是,锂离子电池需要动态输入电流和电压,因此也需要功率,以优化电池的充电性能。因此,DLC系统不能优化电力传输效率或电池充电性能。我们首先提出一种自适应DLC(ADLC)系统,以优化无线功率传输效率和电池充电性能。然后,我们分析ADLC的功率转换以描述自适应机制。最后,我们通过仿真评估了ADLC的功率转换性能,这说明与固定功率充电系统相比,它至少可节省60.4%的能量,从而提高了效率。

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