Human EMF Exposure in Wearable Networks for Internet of Battlefield Things

Imtiaz Nasim, Seungmo Kim
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引用次数: 11

Abstract

Numerous antenna design approaches for wearable applications have been investigated in the literature. As on-body wearable communications become more ingrained in our daily activities, the necessity to investigate the impacts of these networks burgeons as a major requirement. In this study, we investigate the human electromagnetic field (EMF) exposure effect from on-body wearable devices at 2.4 GHz and 60 GHz, and compare the results to illustrate how the technology evolution to higher frequencies from wearable communications can impact our health. Our results suggest the average specific absorption rate (SAR) at 60 GHz can exceed the regulatory guidelines within a certain separation distance between a wearable device and the human skin surface. To the best of authors' knowledge, this is the first work that explicitly compares the human EMF exposure at different operating frequencies for on-body wearable communications, which provides a direct roadmap in design of wearable devices to be deployed in the Internet of Battlefield Things (IoBT).
战场物联网可穿戴网络中的人体电磁场暴露
许多用于可穿戴应用的天线设计方法已经在文献中进行了研究。随着身体可穿戴通信在我们的日常活动中变得越来越根深蒂固,研究这些网络的影响的必要性成为一项主要需求。在本研究中,我们研究了2.4 GHz和60 GHz的人体可穿戴设备对人体电磁场(EMF)暴露的影响,并比较了结果,以说明可穿戴通信技术向更高频率的发展如何影响我们的健康。我们的研究结果表明,在可穿戴设备与人体皮肤表面一定的分离距离内,60 GHz的平均比吸收率(SAR)可以超过监管指南。据作者所知,这是第一次明确比较人体可穿戴通信在不同工作频率下的EMF暴露,这为部署在战场物联网(IoBT)中的可穿戴设备的设计提供了直接的路线图。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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