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The effect of metal objects on the SAR and temperature increase in the human head exposed to dipole antenna (numerical analysis)

机译:金属物体对暴露于偶极天线的人头的SAR和温度升高的影响(数值分析)

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摘要

Wearable metal objects with high electromagnetic re?ection characteristics can cause interference with the incident waves during exposure to the electromagnetic (EM) radiation. Therefore, it is of interest to investigate the effect of metal objects capable of increasing the absorption of EM energy and temperature within the tissues when get exposed to EM radiation. A numerical analysis of increase in specifc absorption rate (SAR) and temperature distribution in a human head model when metal objects are placed between the head and radiating source is performed. A realistic three-dimensional heterogeneous human head model, metal objects of different shapes and sizes, and spectacles with different lenses are used. A half-wavelength dipole antenna operating at 1800 MHz served as an EM radiation source. Results show that the presence of metal objects in proximity to the head alters SAR and temperature increase within the tissues. In most cases, metal objects redistribute the EM fieldincident upon them to a smaller region increasing power absorption, thereby increasing SAR and temperature in that region. The power absorption in head layers is found to be sensitive to metal object’s size and shape, and distance of the antenna from the objects.
机译:具有高电磁RE的可穿戴金属对象θ特性可在暴露于电磁(EM)辐射期间干扰入射波。因此,研究能够在暴露于EM辐射时能够增加能够增加组织内的EM能量和温度的吸收的金属物体的影响。进行了在头部置于头部和辐射源之间的人体头模型中规范吸收率(SAR)和温度分布的增加的数值分析。使用现实的三维异构人头模型,不同形状和尺寸的金属物体,以及具有不同透镜的眼镜。以1800 MHz运行的半波长偶极天线用作EM辐射源。结果表明,靠近头部的金属物体的存在改变了组织内的SAR和温度升高。在大多数情况下,金属物体将其重新分配给它们以较小的区域增加功率吸收的区域,从而增加该区域的SAR和温度。发现头层的功率吸收对金属物体的尺寸和形状敏感,以及天线与物体的距离。

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