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Numerical Analysis of Electromagnetic Field Exposure from 5G Mobile Communications at 28 GHZ in Adults and Children Users for Real-World Exposure Scenarios

机译:28 GHz在成人和儿童用户的5G移动通信电磁场曝光的数值分析实现现实世界曝光情景

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摘要

The recent development of millimeter-wave (mmW) technologies, such as the fifth-generation (5G) network, comes with concerns related to user exposure. A quite large number of dosimetry studies above 6 GHz have been conducted, with the main purpose being to establish the correlation between different dosimetric parameters and the skin surface temperature elevation. However, the dosimetric studies from 28 GHz user equipment using different voxel models have not been comprehensively discussed yet. In this study, we used the finite-difference time-domain (FDTD) method for the estimation of the absorption of radiofrequency (RF) energy from a microstrip patch antenna array (28 GHz) in different human models. Specifically, we analyzed different exposure conditions simulating three real common scenarios (a phone call scenario, message writing scenario, and browsing scenario) regarding the use of smartphones/tablets by four different individuals (adult male and female, child male and female). From the results of Absorbed Power Density (Sab), it is possible to conclude that all the considered exposure scenarios comply with the safety limits, both for adult and children models. However, the high values of the local Specific Absorption Rate (SAR) in the superficial tissues and the slight differences in its distribution between adults and children suggest the need for further and more detailed analysis.
机译:最近的毫米波(MMW)技术(如第五代(5G)网络)的发展,涉及与用户曝光有关的顾虑。已经进行了6 GHz高于6 GHz的相当大量的剂量研究,主要目的是建立不同剂量参数与皮肤表面温度高度之间的相关性。然而,尚未全面讨论来自28 GHz用户设备的28 GHz用户设备的剂量研究。在该研究中,我们使用了在不同人类模型中从微带贴片天线阵列(28GHz)中射频(RF)能量的吸收的有限差分时域(FDTD)方法。具体而言,我们分析了不同的曝光条件,这些曝光条件模拟了三种实际常见场景(电话方案,消息写入方案和浏览方案),这是通过四个不同的个人使用智能手机/片剂(成年男性和女性,儿童男性和女性)。从吸收功率密度(SAB)的结果,可以得出结论,所有考虑的曝光情景都符合成人和儿童模型的安全限制。然而,浅表组织中局部特异性吸收率(SAR)的高值和成人和儿童分布的轻微差异表明需要进一步和更详细的分析。

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