用于身体中心应用的柔性可穿戴石墨烯基太赫兹天线

Abdoalbaset Abohmra, Fizzah Jilani, H. Abbas, A. Alomainy, M. Ur-Rehman, M. Imran, Q. Abbasi
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引用次数: 6

摘要

本文提出了一种工作在太赫兹频率范围内的基于石墨烯的可穿戴天线。石墨烯具有极具吸引力的电子特性,加上现代制造技术,不仅可以生产出灵活、高效、低调的天线,适合太赫兹应用。本文研究的石墨烯天线谐振频率为0.647太赫兹。使用三层人体皮肤评估了天线在人体和自由空间中的性能。仿真结果表明,该天线的带宽为20 GHz,在自由空间的辐射效率为96%,在机身的辐射效率为50%,增益分别为7.8 dB和7dB。该天线结构小巧灵活,阻抗匹配良好,带宽高,增益高,效率高,是人体附近近距离无线通信的理想选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flexible and Wearable Graphene-based Terahertz Antenna for Body-Centric Applications
This paper presents a graphene-based wearable antenna operating in the terahertz frequency range. Graphene with its highly attractive electronic properties, and modern manufacturing techniques can yield antennas that are not only flexible but efficient and low-profile, suited for terahertz applications. The graphene antenna investigated here has a resonant frequency of 0.647 THz. The performance of the antenna is evaluated on-body and in free space using three layers of human skin. Simulated results show that the proposed antenna has a bandwidth of 20 GHz and offers a radiation efficiency of 96% in free space and 50% on the body, with respective gains of 7.8 dB and 7dB. The small and flexible structure of the antenna along with excellent impedance matching, high bandwidth, and gain, and good efficiency makes it an appropriate candidate to shortrange wireless communication in the vicinity of the human body.
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