基于超材料的可穿戴单极天线对人体的影响

E. Tetik, G. Tetik
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引用次数: 5

摘要

在这项研究中,设计和表征了一种可穿戴单极天线和基于导电纺织品的超材料电磁带隙结构。以纯铜涤纶塔夫绸为导电织物。以导电纺织品为基础的可穿戴天线由于其与衣服相结合、易于穿戴的特点,在以身体为中心的技术领域备受关注。在这方面,研究了天线的反射系数、辐射方向图和表面电流,并获得了其性能。然后,我们设计了电磁带隙结构(3x3单元格),并将该结构集成到可穿戴天线中。最后分析了可穿戴天线和集成结构的比吸收率(SAR)值。可穿戴天线和一体化结构的SAR值分别为17.4 W/kg和0.329 W/kg。此外,设计了具有4x3单元格的电磁带隙结构,并再次将可穿戴天线与该4x3结构集成。同样,我们得到了新集成结构的SAR值为0.241 W/kg。结果表明,该综合结构对人体具有相当有利的SAR价值。它可以用于许多具有低SAR值的可穿戴天线应用。
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The Effect of a Metamaterial Based Wearable Monopole Antenna on the Human Body
In this study, design and characterization of a wearable monopole antenna and metamaterial based electromagnetic band gap structure using conductive textile was reported. The pure copper polyester taffeta fabric was used as a conductive textile. The conductive textile based wearable antennas have attracted considerable attention for body centric technologies due to the ability of being integrated with clothes and easily worn. In this respect, the reflection coefficients, radiation pattern, and surface currents for proposed antenna were investigated and its performance was obtained. Then, we designed the electromagnetic band gap structure (3x3 unit cell) and integrated the wearable antenna with this structure. Finally, the specific absorption rate (SAR) values for wearable antenna and integrated structure were analyzed. The SAR values of wearable antenna and integrated structure were obtained as 17.4 W/kg and 0.329 W/kg, respectively. In addition, the electromagnetic band gap structure that has 4x3 unit cell was designed and again the wearable antenna was integrated with this 4x3 structure. Similarly, we obtained the SAR value of new integrated structure as 0.241 W/kg. It was demonstrated that the integrated structures have considerably favorable SAR value for human body. It can be used in many wearable antenna applications with this low SAR value.
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