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Effective Analysis of Human Exposure Conditions with Body-worn Dosimeters in the 2.4 GHz Band

机译:使用2.4 GHz频段的人体剂量计对人体暴露条件进行有效分析

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摘要

A well-defined experimental procedure is put forward to evaluate maximum exposure conditions in a worst-case scenario whilst avoiding the uncertainties caused by the use of personal exposimeters (PEMs) as measuring devices: the body shadow effect (BSE), the limited sensitivity range, and the non-identification of the radiation source. An upper bound for exposure levels to EMF in several indoor enclosures has been measured and simulated. The frequency used for the study is 2.4 GHz, as it is the most commonly used band in indoor communications. Although recorded values are well below the International Commission for Non-Ionizing Radiation Protection (ICNIRP) reference levels, there is a particular need to provide reliable exposure levels within particularly sensitive environments. In terms of electromagnetic field (EMF) exposure, limits established in national and international standards for health protection have been set for unperturbed exposure conditions; that is, for real and objective exposure data that have not been altered in any way.
机译:提出了一种定义明确的实验程序,以评估最坏情况下的最大暴露条件,同时避免了由于使用个人光度计(PEM)作为测量设备而造成的不确定性:人体阴影效应(BSE),有限的灵敏度范围以及无法识别辐射源。已测量并模拟了几个室内机柜中EMF暴露水平的上限。该研究使用的频率为2.4 GHz,因为它是室内通信中最常用的频带。尽管记录的值远低于国际非电离辐射防护委员会(ICNIRP)参考水平,但特别需要在特别敏感的环境中提供可靠的暴露水平。在电磁场(EMF)暴露方面,已经为不受干扰的暴露条件设定了国家和国际健康保护标准中规定的限值;也就是说,对于没有以任何方式更改的真实和客观曝光数据。

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