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Seamless exploitation of cell-phone antennas for near-field WPT by a frequency-diplexing approach

机译:通过频率双工方法无缝开发用于近场WPT的手机天线

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摘要

This paper introduces a novel solution for portable devices to exploit their existing communication antennas for bi-directional near-field wireless re-charging, without compromising their far-field properties. To demonstrate the concept, the radio-frequencies (RF) 900/1800 MHz and 433 MHz are adopted for the far-field communication and for the near-field wireless recharging, respectively. First, a pair of faced, dual-band, printed monopoles is characterized as a two-port network over the bands of interest at several distances. Then, each antenna is fed by a frequency-selective three-port network, designed to simultaneously ensure data communication at the higher frequencies and wireless re-charging at the lower one. In this way, the combined far-field and near-field operations of the resulting four-port network can be optimized. A proof-of-concept prototype has been characterized, showing ports isolation higher than 20 dB and RF-to-RF power transfer efficiency between 15% and 40% for variable faced antennas distance. When a rectifier is connected to the receiving power port, the measured RF-to-dc link efficiency varies between 9% and 20%, with portable devices located 1 and 2 centimeters apart, and the transmitted power is 10 dBm. The simultaneous high frequency communication is verified with slightly reduced performance.
机译:本文介绍了一种新颖的解决方案,供便携式设备利用其现有的通信天线进行双向近场无线充电,而又不会损害其远场性能。为了演示该概念,分别将900/1800 MHz和433 MHz的射频(RF)用于远场通信和近场无线充电。首先,一对面对的双频带印刷单极子的特征是在感兴趣的频带上几个距离处的双端口网络。然后,每个天线由一个选频三端口网络馈电,该网络旨在同时确保较高频率的数据通信和较低频率的无线充电。这样,可以优化最终四端口网络的组合远场和近场操作。概念验证原型已经过表征,对于可变面对天线距离,其端口隔离度高于20 dB,RF到RF的功率传输效率在15%到40%之间。当整流器连接到接收电源端口时,所测得的RF-dc链路效率在9%和20%之间变化,便携式设备相距1和2厘米,发射功率为10 dBm。验证了同时进行的高频通信,但性能略有下降。

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