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用于 5GHz WBAN 中生物医学应用的可穿戴极化转换超表面 MIMO 天线。

Wearable Polarization Conversion Metasurface MIMO Antenna for Biomedical Applications in 5 GHz WBAN.

机构信息

School of Computer Science and Engineering, Central South University, Changsha 410083, China.

出版信息

Biosensors (Basel). 2023 Jan 1;13(1):73. doi: 10.3390/bios13010073.

Abstract

This paper presents a wearable metasurface multiple-input multiple-output (MIMO) antenna for biomedical applications in a 5 GHz wireless body area network (WBAN) with broadband, circular polarization (CP), and high gain. The physical properties of the MIMO antenna element and the principles of polarization conversion are analyzed in-depth using characteristic mode analysis. For the proposed MIMO antenna, the measured -10 dB impedance bandwidth is 34.87% (4.76-6.77 GHz), and the 3 dB axial ratio bandwidth is 22.94% (4.9-6.17 GHz). By adding an isolation strip, the measured isolation of the two antenna elements is greater than 19.85 dB. The overall size of the MIMO antenna is 1.67λ × 0.81λ × 0.07λ at 5.6 GHz, and the maximum gain is 7.95 dBic. The envelope correlation coefficient (ECC) is less than 0.007, with the maximum diversity gain greater than 9.98 dB, and the channel capacity loss is less than 0.29 b/s/Hz. The specific absorption rate (SAR) of the wearable MIMO antenna is simulated by the human tissue model, which proves that the proposed antenna conforms to international standards and is harmless to humans. The proposed wearable metasurface MIMO antenna has CP, broadband, high gain, low ECC, and low SAR, which can be used in wearable devices for biomedical applications.

摘要

本文提出了一种用于 5GHz 无线体域网(WBAN)中生物医学应用的可穿戴超表面多输入多输出(MIMO)天线,该天线具有宽带、圆极化(CP)和高增益。使用特征模式分析深入分析了 MIMO 天线元件的物理特性和极化转换原理。对于所提出的 MIMO 天线,测量的-10dB 阻抗带宽为 34.87%(4.76-6.77GHz),3dB 轴比带宽为 22.94%(4.9-6.17GHz)。通过添加隔离条,两个天线元件的测量隔离度大于 19.85dB。MIMO 天线的整体尺寸为 5.6GHz 时为 1.67λ×0.81λ×0.07λ,最大增益为 7.95dBic。包络相关系数(ECC)小于 0.007,最大分集增益大于 9.98dB,信道容量损耗小于 0.29b/s/Hz。通过人体组织模型对可穿戴 MIMO 天线的比吸收率(SAR)进行了模拟,证明了所提出的天线符合国际标准,对人体无害。所提出的可穿戴超表面 MIMO 天线具有 CP、宽带、高增益、低 ECC 和低 SAR,可用于生物医学应用的可穿戴设备。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f8d4/9855971/8bc37b2423bd/biosensors-13-00073-g001.jpg

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