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一种用于可穿戴/可植入应用的极低剖面共面波导共形天线。

A very low-profile CPW based conformal antenna for wearable/implantable applications.

出版信息

Technol Health Care. 2024;32(1):103-115. doi: 10.3233/THC-220534.

Abstract

BACKGROUND

In wireless communication standard 4G and 5G, the body centric network plays an important role for the wireless communication between various devices.

OBJECTIVE

This research relates to a wide-band conformal co-planar waveguide (CPW) antenna for wearable applications.

METHODS

The proposed CPW antenna is printed on 0.1 mm thick bio-compatible polymide substrate whose dielectric constant and permittivity are 3.5 and 0.02 respectively. The total area of the antenna is around 17.5 × 15 mm2 which is significantly smaller than the wearable antennas proposed in literature. The proposed antenna is designed to operate in new ISM band 5.8 GHz with the bandwidth of 5.3-6.3 GHz with 2:1 Voltage Standing Wave Ratio (VSWR). The antenna is printed on the flexible substrate and hence robustness of device is evaluated by bending analysis. It reveals the superior performance of the designed CPW antenna over the desired spectrum of operation.

RESULTS

Specific Absorption Rate (SAR) is calculated after placing the antenna at various places of human phantom model and showed that SAR values are below 1.6 W/Kg which is the maximum margin recommended by Federal Communication Commission (FCC), i.e when tested with 1 g and 10 g of human tissue of phantom model, for the test frequency range of 5.5-6.1 GHz, SAR value falls between 0.9987 and 0.921 W/Kg respectively. The antenna also shows the radiation efficiency around 92% with overall realized gain 5.2 dBi which are substantial values for wearable applications.

CONCLUSION

The outcomes of this research revealed the feasibility of the recommended antenna becoming a major contender of future Internet of Things (IoT) applications.

摘要

背景

在无线通信标准 4G 和 5G 中,人体中心网络在各种设备之间的无线通信中起着重要作用。

目的

本研究涉及一种用于可穿戴应用的宽带共面波导 (CPW) 天线。

方法

所提出的 CPW 天线印刷在 0.1 毫米厚的生物兼容聚酰亚胺基板上,其介电常数和介电常数分别为 3.5 和 0.02。天线的总面积约为 17.5×15mm2,明显小于文献中提出的可穿戴天线。所提出的天线设计用于在新的 ISM 频段 5.8GHz 工作,带宽为 5.3-6.3GHz,电压驻波比 (VSWR) 为 2:1。天线印刷在柔性基板上,因此通过弯曲分析评估设备的耐用性。结果表明,所设计的 CPW 天线在所需的工作频谱中具有优越的性能。

结果

将天线放置在人体模型的不同位置后计算出特定吸收率 (SAR),结果表明 SAR 值低于 1.6W/Kg,这是联邦通信委员会 (FCC) 推荐的最大裕度,即在测试频率范围为 5.5-6.1GHz 时,当用 1g 和 10g 人体组织的人体模型进行测试时,SAR 值分别在 0.9987 和 0.921W/Kg 之间。天线的辐射效率也约为 92%,总实现增益为 5.2dBi,这对于可穿戴应用来说是相当可观的数值。

结论

本研究的结果表明,所推荐的天线成为未来物联网 (IoT) 应用的主要竞争者是可行的。

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