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

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作者
Xin Jiang
Ramesh K. Pokharel
Adel Barakat
Kuniaki Yoshitomi
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[1] Kyushu University,Graduate School of Information Science and Electrical Engineering
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Scientific Reports | / 11卷
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摘要
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.
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  • [1] Liu C(2019)An effective sandwiched wireless power transfer system for charging implantable cardiac pacemaker IEEE Trans. Ind. Electron. 66 4108-4117
  • [2] Jiang C(2019)Wireless, battery-free, fully implantable multimodal and multisite pacemakers for applications in small animal models Nat. Commun. 10 5742-649
  • [3] Song J(2014)Insulin pump therapy for type 2 diabetes mellitus Nat. Rev. Endocrinol. 10 647-1133
  • [4] Chau KT(2015)Capsule robot for obesity treatment with wireless powering and communication IEEE Trans. Ind. Electron. 62 1125-8
  • [5] Gutruf P(2021)Broadband implantable antenna for wireless power transfer in cardiac pacemaker applications IEEE J. Electromagn. RF Microw. Med. Biol. 5 2-2596
  • [6] Pickup JC(2020)Analysis and design of a robust, low-power, inductively coupled LSK data link IEEE J. Solid-State Circ. 55 2583-2385
  • [7] Yan L(2018)Modulation techniques for simultaneous wireless information and power transfer with an integrated rectifier–receiver IEEE Trans. Microw. Theory Tech. 66 2373-279
  • [8] Wang M(2020)Robust and efficient wireless power transfer using a switch-mode implementation of a nonlinear parity–time symmetric circuit Nat. Electron. 3 273-390
  • [9] Yousefi A(2017)Robust wireless power transfer using a nonlinear parity–time-symmetric circuit Nature 546 387-496
  • [10] Abidi AA(2015)Multi-service highly sensitive rectifier for enhanced rf energy scavenging Sci. Rep. 5 9655-3239