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利用并联谐振器实现人体三维空间内均匀功率传输的无线电能传输。

Wireless Power Transmission with Uniform Power Delivery in the 3D Space of the Human Body using Resonators in Parallel.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2021 Nov;2021:7268-7271. doi: 10.1109/EMBC46164.2021.9629929.

Abstract

This paper presents a novel resonance-based multi-coil wireless power transmission (WPT) system for powering implantable devices inside the 3D space of the human body. This design consists of a power amplifier, a transmitter coil, a cluster of resonators in parallel configuration, and a receiver unit, working at 13.56 MHz (the FCC-approved ISM-band). The proposed cluster configuration of the resonators in parallel configuration guarantees homogenous electromagnetic fields and uniform wireless power distribution in the 3D space of the body. It localizes the transmitted power at the receiver location naturally by activating the resonators near the receiver. We have modeled the proposed inductive link and the human body with HFSS software to optimize the design and study the body's safety by evaluating the Specific Absorption Rate (SAR) level. The proposed WPT system is implemented, and the measured results show that the inductive link with multiple resonators in parallel configuration can continuously deliver power, >120 mW, wirelessly inside the 3D space of the human-torso with a power transfer efficiency (PTE) of 15%, uniformly. We have also extended the coverage area to the human forearm by paralleling resonators with the resonators in the central body. The power delivered to the load and PTE between the resonators on the forearm area are measured >90 mW and ~14%, respectively.

摘要

本文提出了一种新颖的基于共振的多线圈无线电能传输 (WPT) 系统,用于为人体 3D 空间内的植入式设备供电。该设计由功率放大器、发射线圈、并联配置的谐振器簇和接收器单元组成,工作频率为 13.56 MHz(FCC 批准的 ISM 频段)。所提出的并联配置的谐振器簇结构保证了在人体 3D 空间中均匀的电磁场和无线功率分布。它通过激活靠近接收器的谐振器,将传输功率自然地定位在接收器位置。我们使用 HFSS 软件对所提出的感应链路和人体进行建模,以优化设计并通过评估比吸收率 (SAR) 水平来研究人体的安全性。所提出的 WPT 系统已实现,测量结果表明,具有多个并联谐振器的感应链路可以在人体躯干的 3D 空间内连续无线传输 >120 mW 的功率,功率传输效率 (PTE) 为 15%,均匀分布。我们还通过在中央体中的谐振器上并联谐振器,将覆盖区域扩展到人体前臂。测量到前臂区域上的负载和谐振器之间的 PTE 分别为 >90 mW 和 ~14%。

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