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Gain enhancement of a compact thin flexible reflector-based asymmetric meander line antenna with low SAR

机译:具有低SAR的紧凑型基于薄柔性反射器的非对称曲折线天线的增益增强

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摘要

A compact, flexible, coplanar waveguide-fed, U-shaped reflector surrounded asymmetric meander line antenna operating at 2.4 GHz is presented for wrist wearable applications. The antenna is printed on flexible Rogers Ultralam 3850 substrate. Size reduction of 67.7% was attained by employing the meandering methodology, in comparison with the printed straight monopole. The design displays a gain of around 3 dB by incorporating a U-shaped reflector, on the same level as the radiator, which is considered as the main contribution of the proposed design. Bending scenarios were studied proving the antenna robustness against bending. The proposed antenna was bent over a human body model with optimum separation distance, where enhancement of the specific absorption rate (SAR) level has been achieved, compared to the symmetric meander line antenna. The antenna was fabricated and measured where a high agreement was met in terms of simulated and measured return loss and radiation pattern polar plots, as well as, simulated and measured gain.
机译:针对手腕可穿戴应用,提出了一种紧凑,灵活,共面的,由波导馈电的U形反射器,围绕2.4 GHz运行的不对称曲折线天线。天线印在柔性的Rogers Ultralam 3850基板上。与印刷的笔直单极子相比,采用曲折方法可将尺寸减小67.7%。通过在与散热器相同的水平上并入一个U形反射镜,该设计显示出约3 dB的增益,这被认为是所提出设计的主要贡献。研究了弯曲情况,证明了天线抗弯曲的鲁棒性。与对称曲折线天线相比,拟议中的天线以最佳的分离距离弯折在人体模型上,从而实现了比吸收率(SAR)水平的增强。在模拟和测量的回波损耗,辐射方向图极坐标图以及模拟和测量的增益方面,在满足较高一致性的情况下制造和测量天线。

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