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Free-Positioning Wireless Power Transfer to Multiple Devices Using a Planar Transmitting Coil and Switchable Impedance Matching Networks

机译:使用平面发射线圈和可切换阻抗匹配网络将无线功率自由定位到多个设备

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摘要

In this paper, an efficient free-positioning wireless power transfer (WPT) system for charging multiple devices is proposed. For the system, a planar transmitting (Tx) coil that consists of a spiral coil and concentric multiple parallel loops and switchable impedance matching networks (IMNs) at a transmitter are developed. Using the Tx coil, mutual inductance between the Tx coil and the receiving (Rx) spiral coils is made uniform in the effective charging area. The parallel loops are placed in the interior of the Tx coil, and the magnetic field is enhanced and controlled by adjusting the space in each parallel loop. For optimal design of the coil, an analysis method using an equivalent circuit is explained in detail. It is found that the current of one loop of a parallel loop is more than the input current and negative current flows on the other loop, while the total current of each parallel loop is constant. An array of parallel capacitors with a switch as the switchable IMN is used for the maximum power transfer efficiency corresponding to the number of devices. The reflection coefficients of the fabricated WPT system are under -10 dB at 6.78 MHz, regardless of the number of devices and positions. The WPT system has the maximum power transfer efficiencies of 93% for two devices and simultaneously transfers uniform power to up to four devices with high efficiency.
机译:本文提出了一种高效的自由定位无线电力传输(WPT)系统,用于为多个设备充电。对于该系统,开发了一个平面发射(Tx)线圈,该线圈由螺旋形线圈和同心的多个并行回路以及发射器处的可切换阻抗匹配网络(IMN)组成。使用Tx线圈,可使Tx线圈与接收(Rx)螺旋线圈之间的互感在有效充电区域内保持一致。将并联回路放置在Tx线圈的内部,并通过调整每个并联回路中的空间来增强和控制磁场。为了优化设计线圈,将详细介绍使用等效电路的分析方法。可以发现,并联回路中一个回路的电流大于输入电流,负电流在另一回路中流动,而每个并联回路的总电流是恒定的。具有开关作为可切换IMN的并联电容器阵列用于获得与设备数量相对应的最大功率传输效率。无论设备数量和位置如何,制造的WPT系统的反射系数在6.78 MHz时均低于-10 dB。 WPT系统对两个设备的最大功率传输效率为93%,并且可以高效地将均匀功率传输到最多四个设备。

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