智能家居设备产生的2.45 GHz频段射频场评估。

IF 1.8 3区 生物学 Q3 BIOLOGY
Raymond J. McKenzie BSc, Steve Iskra PhD, Phillip Knipe PhD
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引用次数: 0

摘要

本文描述了对现代“智能”家庭中用于控制和监控日常设备和电器的消费者“智能”设备产生的电磁场的评估。该评估基于对一系列此类设备在实验室环境中产生的场的仔细测量,这些设备配置在模拟高用户活动的条件下运行。本研究中包括的所有设备都在2.4 GHz频段使用Wi-Fi或蓝牙连接。总体结果表明,就人类暴露安全标准而言,所有物联网智能设备的电磁场水平非常低(通常远低于1%),占空比非常低(也低于1%),导致时间平均暴露水平更低。这些低水平的暴露,以及与设备距离的迅速减少,表明“智能”家居中多个设备的累积效应并不显著。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Assessment of radio frequency fields in the 2.45 GHz band produced by smart home devices

Assessment of radio frequency fields in the 2.45 GHz band produced by smart home devices

This paper describes the assessment of the electromagnetic fields produced by consumer “smart” devices used to control and monitor everyday equipment and appliances in a modern “smart” home. The assessment is based on the careful measurement of fields produced by a range of such devices in a laboratory environment configured to operate in a condition simulating high user activity. All devices included in this study operate in the 2.4 GHz band utilizing either Wi-Fi or Bluetooth connectivity. Overall results indicate very low levels of electromagnetic fields for all IoT smart devices in terms of human exposure safety standards (typically much less than 1%) with very low duty cycles (also less than 1%) resulting in even lower time-averaged exposure levels. These low levels of exposure, along with rapid reduction of levels with distance from the devices, suggests that the cumulative effect of multiple devices in a “smart” home are not significant.

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来源期刊
Bioelectromagnetics
Bioelectromagnetics 生物-生物物理
CiteScore
4.60
自引率
0.00%
发文量
44
审稿时长
6-12 weeks
期刊介绍: Bioelectromagnetics is published by Wiley-Liss, Inc., for the Bioelectromagnetics Society and is the official journal of the Bioelectromagnetics Society and the European Bioelectromagnetics Association. It is a peer-reviewed, internationally circulated scientific journal that specializes in reporting original data on biological effects and applications of electromagnetic fields that range in frequency from zero hertz (static fields) to the terahertz undulations and visible light. Both experimental and clinical data are of interest to the journal''s readers as are theoretical papers or reviews that offer novel insights into or criticism of contemporary concepts and theories of field-body interactions. The Bioelectromagnetics Society, which sponsors the journal, also welcomes experimental or clinical papers on the domains of sonic and ultrasonic radiation.
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