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首页> 外文期刊>Internet of Things Journal, IEEE >A Glasses Frame Antenna for the Applications in Internet of Things
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A Glasses Frame Antenna for the Applications in Internet of Things

机译:用于物联网应用的眼镜框天线

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摘要

A novel concept of metal glasses frame antenna is proposed and relevant investigations are conducted to estimate its performance. A prototype antenna is designed based on a pair of glasses and then measured for demonstration and verification. It is indicated by the simulations and the measurements that the width of the ring rim has only a small impact on the performance. However, the investigation shows that the shape of the frame and even the material of the lens could impose significant influence on the resonance frequency points and the matching performance. The main lobe would shift away from the direct front if the feeding location is moved on the central pole connecting the two rings or the excitation is put on other points of the spectacles frame. The difference between the semi-rimmed glasses and the one with closed rings primarily lies in the beam width of the main lobe. It can be seen that a fractional bandwidth of 14.5% could be realized at 5.8 GHz, falling into the industrial, scientific, and medical (ISM) band. In addition, the maximum value of the simulated specific absorption rate (SAR) is 1.56 W/kg within this frequency band. The measurement results are well consistent with those of the simulations, indicating that it is a potential candidate serving as an efficient tool for sensing and communications for the applications in Internet of Things, especially body-centric wireless networks.
机译:提出了一种新颖的金属眼镜框天线概念,并进行了相关研究以评估其性能。基于一副眼镜设计原型天线,然后对其进行测量以进行演示和验证。仿真和测量结果表明,轮辋的宽度对性能的影响很小。然而,研究表明,镜架的形状甚至透镜的材料都可能对共振频率点和匹配性能产生重大影响。如果进给位置在连接两个环的中心杆上移动,或者将激励放在眼镜架的其他点上,则主瓣将从直接前方移开。半框眼镜和闭环眼镜的区别主要在于主瓣的光束宽度。可以看出,在5.8 GHz频率下可以实现14.5%的部分带宽,属于工业,科学和医学(ISM)频段。另外,在该频带内,模拟比吸收率(SAR)的最大值为1.56W / kg。测量结果与模拟结果非常吻合,表明它是潜在的候选对象,可作为用于物联网(尤其是以身体为中心的无线网络)中的感测和通信的有效工具。

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