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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >2014 Distinguished Public Service Award--Robert L. Brent.
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2014 Distinguished Public Service Award--Robert L. Brent.

机译:2014年杰出公共服务奖-罗伯特·布伦特(Robert L.Brent)。

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摘要

Characterization of exposure from emerging radio frequency (RF) technologies in areas where children are present is important. Exposure to RF electromagnetic fields (EMF) was assessed in three "sensitive" microenvironments; namely, schools, homes, and public places located in urban environments and compared to exposure in offices. In situ assessment was conducted by performing spatial broadband and accurate narrowband measurements, providing 6-min averaged electric-field strengths. A distinction between internal (transmitters that are located indoors) and external (outdoor sources from broadcasting and telecommunication) sources was made. Ninety-four percent of the broadband measurements were below 1 V m(-1). The average and maximal total electric-field values in schools, homes, and public places were 0.2 and 3.2 V m(-1) (WiFi), 0.1 and 1.1 V m(-1) (telecommunication), and 0.6 and 2.4 V m(-1) (telecommunication), respectively, while for offices, average and maximal exposure were 0.9 and 3.3 V m(-1) (telecommunication), satisfying the ICNIRP reference levels. In the schools considered, the highest maximal and average field values were due to internal signals (WiFi). In the homes, public places, and offices considered, the highest maximal and average field values originated from telecommunication signals. Lowest exposures were obtained in homes. Internal sources contributed on average more indoors (31.2%) than outdoors (2.3%), while the average contributions of external sources (broadcast and telecommunication sources) were higher outdoors (97.7%) than at indoor positions (68.8%). FM, GSM, and UMTS dominate the total downlink exposure in the outdoor measurements. In indoor measurements, FM, GSM, and WiFi dominate the total exposure. The average contribution of the emerging technology LTE was only 0.6%.
机译:在有儿童的地区表征新兴的射频(RF)技术的辐射很重要。在三个“敏感”微环境中评估了暴露于RF电磁场(EMF)的程度。即位于城市环境中的学校,住宅和公共场所,并与办公室的暴露情况进行比较。通过执行空间宽带和精确的窄带测量进行原位评估,提供6分钟的平均电场强度。在内部(位于室内的发射机)和外部(来自广播和电信的室外源)之间进行了区分。 94%的宽带测量值低于1 V m(-1)。学校,家庭和公共场所的平均和最大总电场值为0.2和3.2 V m(-1)(WiFi),0.1和1.1 V m(-1)(电信),0.6和2.4 V m (-1)(电信),而办公室的平均和最大暴露分别为0.9和3.3 V m(-1)(电信),满足ICNIRP参考水平。在所考虑的学校中,最大场均值和最高场均归因于内部信号(WiFi)。在所考虑的家庭,公共场所和办公室中,最大的最大和平均字段值源自电信信号。在家中接触率最低。内部来源对室内的贡献(31.2%)比室外(2.3%)平均多,而外部来源(广播和电信来​​源)的平均贡献高于室外(97.7%),高于室内位置(68.8%)。在室外测量中,FM,GSM和UMTS占总下行链路辐射的主导地位。在室内测量中,FM,GSM和WiFi占了总曝光量。新兴技术LTE的平均贡献仅为0.6%。

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