5G NR launching in Greece: Preliminary in situ and monitoring network measurements of electromagnetic fields exposure levels at rooftops

IF 1.8 3区 生物学 Q3 BIOLOGY Bioelectromagnetics Pub Date : 2024-03-05 DOI:10.1002/bem.22502
Maria I. Christopoulou PhD, Theodora Kyritsi MSc, Agamemnon Yalofas MSc, Dimitris Koutounidis MSc, Efthymios Karabetsos PhD
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Abstract

In Greece, 5G New Radio (NR) has started launching in the end of 2020, at the 3400–3800 MHz (FR1) frequency band. Focusing on 117 Base Stations (BSs) which were already equipped with 5G NR antennas, in situ broadband and frequency selective measurements have been conducted at minimum three points of interest, at adjacent rooftops (when accessible). The points have been selected according to the sweeping method and the electric field strength (E) value has been stored on the selected worst-case scenario point. Spectrum analysis was conducted in the FR1, for the allocated spectrum that corresponds to each mobile communication provider, in order to get preliminary results concerning the contribution of the 5G NR emissions in the general public exposure levels. The vast majority of the in situ measurements has been conducted in urban environments from the beginning of 2021 until the mid of 2022, since in Greece 5G NR services launching started from the big cities. Additionally, a 5G NR BS, installed in a suburban environment (in the city of Kalamata) is thoroughly investigated during its pilot and regular operation, based on broadband and frequency selective measurements data derived by the National Observatory of Electromagnetic Fields (NOEF) monitoring sensor network. In situ measurement data within the 5G NR frequency range are verified via the NOEF's output. The 5G NR contribution to the total E-field levels is assessed in time, from pilot to regular operation of the BS. In all cases, compliance with the reference levels for general public exposure is affirmed.

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希腊启动 5G NR:屋顶电磁场暴露水平的初步现场和监测网络测量。
在希腊,5G 新无线电(NR)已于 2020 年底开始在 3400-3800 兆赫(FR1)频段推出。以 117 个已配备 5G NR 天线的基站(BS)为重点,在相邻屋顶(如可进入)的至少三个相关点进行了现场宽带和频率选择性测量。测量点根据扫频方法选定,电场强度 (E) 值存储在选定的最坏情况点上。在 FR1 中,针对与各移动通信提供商相对应的分配频谱进行了频谱分析,以获得有关 5G NR 辐射在一般公众暴露水平中所占比例的初步结果。从 2021 年初到 2022 年中,绝大多数现场测量都是在城市环境中进行的,因为希腊的 5G NR 服务是从大城市开始启动的。此外,基于国家电磁场天文台(NOEF)监测传感器网络获得的宽带和频率选择性测量数据,对安装在郊区环境(卡拉马塔市)的 5G NR BS 在试运行和正常运行期间进行了全面调查。5G NR 频率范围内的现场测量数据通过 NOEF 的输出进行验证。对 5G NR 对总电磁场水平的贡献进行了及时评估,从试运行到 BS 的正常运行。在所有情况下,均确认符合一般公众暴露的参考水平。
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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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