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基于超材料-极化转换器的旋转不敏感植入式无线医疗设备能量传输系统。

Rotation insensitive implantable wireless power transfer system for medical devices using metamaterial-polarization converter.

机构信息

Department of Electrical Engineering, Microwaves in Medical Engineering Group, Division of Solid-State Electronics, Uppsala University, 75121, Uppsala, Sweden.

Department of Electronics and Communication Engineering, The Lakshmi Niwas Mittal Institute of Information Technology, Jaipur, 302031, Rajasthan, India.

出版信息

Sci Rep. 2024 Aug 24;14(1):19688. doi: 10.1038/s41598-024-70591-4.

Abstract

This article introduces an innovative approach for creating a circular polarization (CP) antenna-based rotation-insensitive implantable wireless power transfer (WPT) system for medical devices. The system is constructed to work in the industrial, scientific, and medical (ISM) frequency band of 902-928 MHz. Initially, a flexible, wide-band, and bio-compatible open-ended CP slot antenna is designed within a single-layer human skin tissue model to serve as the receiving (Rx) element. To form the implantable WPT link, a circular patch antenna is also constructed in the free-space to use as a transmitting (Tx) source. Further, a new metamaterial-polarization converter (MTM-PC) structure is developed and incorporated into the proposed system to enhance the power transfer efficiency (PTE). Furthermore, the rotational phenomenon of the Rx implant has been studied to show how the rotation affects the system's performance. Moreover, a numerical analysis of the specific absorption rate (SAR) is conducted to confirm compliance with safety regulations and prioritize human safety from electromagnetic exposure. Finally, to validate the introduced concept, prototypes of the different elements of the proposed WPT system were fabricated and tested using skin-mimicking gel and porcine tissue. The measured results confirm the feasibility of the introduced approach, exhibiting improved efficiency due to use of the MTM-PC. The amplitude of the transmission coefficient ( ) has improved by 6.94 dB in the simulation, whereas the enhancement of 7.04 dB and 6.76 dB is obtained from the experimental study due to the integration of MTM-PC. As a result, the PTE of the proposed MTM-PC integrated implantable WPT system is increased significantly compared to the system without MTM-PC.

摘要

本文提出了一种基于圆极化(CP)天线的创新方法,用于构建旋转不敏感的植入式无线电能传输(WPT)系统,以用于医疗设备。该系统构建在工作于工业、科学和医疗(ISM)频段 902-928MHz 的环境下。首先,在单层人体皮肤模型内设计了一个灵活、宽带和生物兼容的开口 CP 缝隙天线,用作接收(Rx)元件。为了形成植入式 WPT 链路,还在自由空间中构建了一个圆形贴片天线,用作发射(Tx)源。此外,还开发了一种新型的超材料极化转换器(MTM-PC)结构,并将其纳入到所提出的系统中,以提高功率传输效率(PTE)。进一步研究了 Rx 植入物的旋转现象,以展示旋转如何影响系统的性能。此外,还进行了特定吸收率(SAR)的数值分析,以确认符合安全规定,并优先考虑人体免受电磁辐射的安全。最后,为了验证所提出的概念,使用皮肤模拟凝胶和猪组织制造和测试了所提出的 WPT 系统的不同元件的原型。测量结果证实了所提出方法的可行性,由于使用 MTM-PC,效率得到了提高。在仿真中,传输系数( )的幅度提高了 6.94dB,而由于 MTM-PC 的集成,实验研究获得了 7.04dB 和 6.76dB 的增强。因此,与没有 MTM-PC 的系统相比,所提出的 MTM-PC 集成植入式 WPT 系统的 PTE 显著提高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9614/11344826/4bf5d188c721/41598_2024_70591_Fig1_HTML.jpg

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