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线圈阵列的最佳磁场成形在长距离无线电力传输中的研究。

A Study on the Optimal Magnetic Beam Forming of Coil Arrays for Long Distance Wireless Power Transmission.

机构信息

Department of Electronics Engineering, Hanbat National University, Daejeon 34158, Republic of Korea.

出版信息

Sensors (Basel). 2023 Jun 3;23(11):5312. doi: 10.3390/s23115312.

Abstract

Multiple-input multiple-output (MIMO) wireless power transfer (WPT) technology which employs multiple transmitter (TX) coils to simultaneously couple power to the receiver (RX) coil has proved to be an effective technique to enhance power transfer efficiency (PTE). Conventional MIMO-WPT systems rely on the phase-calculation method based on the phased-array beam steering concept to constructively combine the magnetic fields induced by the multiple TX coils at the RX coil. However, increasing the number and distance of the TX coils in an attempt to enhance the PTE tends to deteriorate the received signal at the RX coil. In this paper, a phase-calculation method is presented that enhances the PTE of the MIMO-WPT system. The proposed phase-calculation method considers the coupling between the coils and applies the phase and amplitude to calculate the coil control data. From the experimental results, the transfer efficiency is enhanced as a result of the transmission coefficient improvement from a minimum of 2 dB to a maximum of 10 dB for the proposed method as compared to the conventional one. By implementing the proposed phase-control MIMO-WPT, high-efficiency wireless charging is realizable wherever electronic devices are located in a specific space.

摘要

多输入多输出(MIMO)无线电能传输(WPT)技术采用多个发射(TX)线圈同时将功率耦合到接收(RX)线圈,已被证明是一种提高功率传输效率(PTE)的有效技术。传统的 MIMO-WPT 系统依赖于基于相控阵波束转向概念的相位计算方法,以在 RX 线圈处构建由多个 TX 线圈感应的磁场的有效组合。然而,增加 TX 线圈的数量和距离以提高 PTE 往往会恶化 RX 线圈处的接收信号。本文提出了一种提高 MIMO-WPT 系统 PTE 的相位计算方法。所提出的相位计算方法考虑了线圈之间的耦合,并应用相位和幅度来计算线圈控制数据。从实验结果可以看出,与传统方法相比,所提出的方法的传输系数从最小 2dB 提高到最大 10dB,从而提高了传输效率。通过实现所提出的相位控制 MIMO-WPT,可以在特定空间中电子设备所在的任何位置实现高效的无线充电。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9427/10255962/487b285c4811/sensors-23-05312-g001.jpg

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