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人体暴露于可穿戴天线的评估:位置和个体解剖学差异的影响。

Human Exposure Assessment to Wearable Antennas: Effect of Position and Interindividual Anatomical Variability.

机构信息

Institute of Electronics, Computer and Telecommunication Engineering (IEIIT), National Research Council (CNR), 20133 Milano, Italy.

Department of Electronics, Information and Bioengineering (DEIB), Politecnico di Milano, 20133 Milano, Italy.

出版信息

Int J Environ Res Public Health. 2022 May 12;19(10):5877. doi: 10.3390/ijerph19105877.

Abstract

(1) Background: This work aims to assess the human exposure to the RF-EMFs emitted by a wearable antenna. (2) Methods: a wearable antenna tuned at f = 2.45 GHz was tested by placing it in six realistic configurations relative to a male and female human model. The exposure assessment was performed by means of computational methods to estimate the SAR distributions at 1W of input power. (3) Results: (i) for all the configurations the SAR distributions resulted always mainly concentrated on a superficial area immediately below the antenna itself; (ii) the obtained values have shown that the configuration with the highest exposure value was when the antenna was posed on the arm; (iii) the exposure tends to be higher for male model. (4) Discussion and Conclusions: This work highlights the importance of performing an exposure assessment when the antenna is placed on the human wearer considering the growth of the wearable technology and its wide variety of fields of application, e.g., medical and military.

摘要

(1) 背景:本工作旨在评估人体对可穿戴天线发射的射频电磁场的暴露情况。(2) 方法:将调谐在 f = 2.45 GHz 的可穿戴天线放置在相对于男性和女性人体模型的六个实际配置中进行测试。通过计算方法进行暴露评估,以估计在 1W 输入功率下的 SAR 分布。(3) 结果:(i) 对于所有配置,SAR 分布始终主要集中在天线本身下方的一个浅层区域;(ii) 所得值表明,当天线放置在手臂上时,暴露值最高;(iii) 男性模型的暴露倾向更高。(4) 讨论和结论:本工作强调了在可穿戴天线放置在人体佩戴者身上时进行暴露评估的重要性,考虑到可穿戴技术的发展及其广泛的应用领域,例如医疗和军事。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e73/9140696/5e8507b26456/ijerph-19-05877-g001.jpg

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