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A Cavity-Backed Annular Slot Antenna With High Efficiency for Smartwatches With Metallic Housing

机译:具有金属外壳的智能手表的高效背腔环形槽式天线

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A cavity-backed annular slot antenna designed for the use in smartwatches in the 2.4-GHz Wi-Fi band is proposed. The cavity is metallic and has a cylindrical shape with a volume of π×212×10 mm3. An annular slot is cut along the edge of the top surface (as the smartwatch screen) of the cavity. The circumference of the annular slot is about 1λ , making the design small enough for the smartwatch applications. The resonant modes, current distribution, and transverse mode of the cavity-backed annular slot antenna are studied using simulations and the results are used to design a smartwatch antenna. The proposed smartwatch is studied in free space, on a computer hand model, and on a phantom hand using simulations and measurements. Measured results show that the antenna has an efficiency of 57%–66% on a phantom hand. To study the antenna in a more realistic environment, the electronic components inside the smartwatch are modeled as a metallic block. For health risk concerns related to exposure to an electromagnetic radiation, the specific absorption rate for the smartwatch in the wrist-worn and next-to-mouth conditions is also studied using simulations.
机译:提出了设计用于2.4 GHz Wi-Fi频段的智能手表中使用的背腔环形缝隙天线。该空腔是金属的,并且具有体积为π×212×10mm 3的圆柱形状。沿空腔顶部表面(作为智能手表屏幕)的边缘切出一个环形槽。环形槽的周长约为1λ,使设计对于智能手表应用而言足够小。通过仿真研究了背腔环形缝隙天线的谐振模式,电流分布和横向模式,并将结果用于设计智能手表天线。拟议的智能手表可在自由空间,计算机指针模型和幻影指针上使用模拟和测量进行研究。测量结果表明,幻像天线的效率为57%–66%。为了在更现实的环境中研究天线,将智能手表内部的电子组件建模为金属块。对于与暴露于电磁辐射有关的健康风险问题,还通过模拟研究了智能手表在手腕佩戴和下一个口中的特定吸收率。

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