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Characterization of the Interactions Between a 60-GHz Antenna and the Human Body in an Off-Body Scenario

机译:在体外场景中60 GHz天线与人体之间相互作用的特性

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摘要

Interactions between a 60-GHz microstrip patch antenna array designed for off-body communications and the human body are investigated numerically and experimentally. First, the array is characterized in free space and on a homogeneous skin-equivalent phantom in terms of reflection coefficient, radiation pattern, and antenna efficiency. Second, a multiphysics dosimetry technique is proposed and implemented to determine the specific absorption rate (SAR) and incident power density (IPD) from the heating dynamics measured on an experimental phantom using a high-resolution infrared (IR) camera. The SAR and IPD are found by fitting the analytical solution of the bio-heat transfer equation to the measured heating dynamics. The experimental and numerical results are in a very good agreement. They demonstrate that for the considered scenario the impact of the body on the antenna characteristics is almost negligible, and even relatively high radiated powers (up to 550 mW) result in exposure levels that are below international exposure limits.
机译:数值和实验研究了为离体通信设计的60 GHz微带贴片天线阵列与人体之间的相互作用。首先,在反射系数,辐射方向图和天线效率方面,该阵列的特征是在自由空间中和均质的皮肤等效体模上。其次,提出并实施了一种多物理场剂量技术,以使用高分辨率红外(IR)相机从在实验体模上测得的加热动力学确定比吸收率(SAR)和入射功率密度(IPD)。 SAR和IPD通过将生物热传递方程的解析解与所测得的热力学拟合来找到。实验和数值结果非常吻合。他们证明,在经过考虑的情况下,人体对天线特性的影响几乎可以忽略不计,甚至相对较高的辐射功率(高达550 mW)也会导致暴露水平低于国际暴露极限。

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