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一种用于紧凑且稳健的双频段无线电力传输系统的多模超材料。

A multimode metamaterial for a compact and robust dualband wireless power transfer system.

作者信息

Jiang Xin, Pokharel Ramesh K, Barakat Adel, Yoshitomi Kuniaki

机构信息

Graduate School of Information Science and Electrical Engineering, Kyushu University, Nishi-Ku, Fukuoka, 819-0395, Japan.

出版信息

Sci Rep. 2021 Nov 11;11(1):22125. doi: 10.1038/s41598-021-01677-6.

Abstract

To release more flexibility for users to charge their portable devices, researchers have increasingly developed compact wireless power transfer (WPT) systems in recent years. Also, a dual-band WPT system is proposed to transfer power and signal simultaneously, enriching the system's functionality. Moreover, a stacked metasurface has recently been proposed for a single band near-field WPT system. In this study, a novel multimode self-resonance-enhanced wideband metasurface is proposed for a robust dual-band WPT system, which significantly improves the performance of both bands. The size of the transmitter (Tx) and the receiver (Rx) are both 15 mm × 15 mm only. The proposed metasurface can improve efficiency from 0.04 up to 39% in the best case. The measured figure of merit (FoM) is 2.09 at 390 MHz and 2.16 at 770 MHz, respectively, in the balanced mode. Especially, the FoM can reach up to 4.34 in the lower mode. Compared to the previous state-of-the-art for similar applications, the WPT performance has significantly been improved.

摘要

为了给用户在为便携式设备充电时提供更大的灵活性,近年来研究人员越来越多地开发紧凑型无线电力传输(WPT)系统。此外,还提出了一种双频WPT系统,可同时传输电力和信号,丰富了系统功能。而且,最近有人为单频近场WPT系统提出了一种堆叠超表面。在本研究中,针对一种稳健的双频WPT系统提出了一种新型多模自谐振增强宽带超表面,它显著提高了两个频段的性能。发射器(Tx)和接收器(Rx)的尺寸仅为15毫米×15毫米。所提出的超表面在最佳情况下可将效率从0.04提高到39%。在平衡模式下,测得的品质因数(FoM)在390兆赫兹时为2.09,在770兆赫兹时为2.16。特别是,在较低模式下FoM可高达4.34。与之前类似应用的最先进技术相比,WPT性能有了显著提高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aac2/8586012/5bc68a5bb337/41598_2021_1677_Fig1_HTML.jpg

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