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A new definition of power transmission efficiency for wireless charging systems by using coil arrays

机译:使用线圈阵列进行无线充电系统电力传输效率的新定义

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Usage of the coil arrays on both the transmitter and receiver sides is introduced for mid-range wireless power transmission (WPT) by employing the technique of strong magnetic resonant coupling. In this paper, a two-coil array is designed for the power transmitting terminal while another two-coil array is designed for the power receiving terminal. Then based on maximum power transmission theorem, we propose a new definition of power transfer efficiency for the coil array feeding WPT system. By applying the newly defined formula, it is shown that a total power transfer efficiency of over 75% at a transmission separation of 50 cm can be achieved, which is much higher than that of other comparison cases without using coil arrays at both transceiver sides in the meantime. Also, the optimized values of load resistors respectively connected to all the receiver coil elements show that the proposed WPT system is especially suitable for electricity chargers with very low internal resistances such as laptop batteries now in commercial use.
机译:通过采用强磁共振耦合的技术,引入用于中距离无线电力传输(WPT)的发射器和接收侧的线圈阵列。本文设计了一种双线圈阵列,用于电力传输终端,而另一个双线圈阵列被设计用于电力接收终端。然后基于最大电力传输定理,为线圈阵列供给WPT系统提出了一种新的电力传递效率定义。通过应用新定义的公式,可以实现在50cm的传输分离中实现超过75%的总功率传输效率,其远高于其他比较情况而不使用两个收发器侧面的线圈阵列与此同时。此外,分别连接到所有接收器线圈元件的负载电阻器的优化值表明,所提出的WPT系统特别适用于具有非常低的内部电阻的电力充电器,例如现在在商业用途中的笔记本电池。

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