Radiation Analysis in a Gradual 5G Network Deployment Strategy

Ahmad M. El-Hajj, Tarek Naous
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引用次数: 4

Abstract

In a world where many overlapping 2G, 3G, and 4G electromagnetic radiation sources already exist, concerns regarding the potential increase in these radiation levels following the roll-out of 5G networks are growing. The deployment of 5G is expected to increase power density levels drastically, given the limitations of mmWave communications that impose a notably higher number of base stations to cover a given area of interest. In this paper, we propose a gradual deployment strategy of a 5G network for a small area in downtown Austin, Texas, using the already existing 4G LTE sites of the area. The radiated power density of the proposed 5G network is then analyzed according to several electromagnetic field (EMF) exposure limits and compared to the radiation levels of the same area where only the LTE network is present. Simulation results for the selected area demonstrate the significant increase in radiation levels resulting from the addition of 5G cell towers.
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渐进式5G网络部署策略中的辐射分析
在一个已经存在许多重叠的2G、3G和4G电磁辐射源的世界中,人们越来越担心5G网络推出后这些辐射水平可能会增加。考虑到毫米波通信的局限性,5G的部署预计将大幅提高功率密度水平,因为毫米波通信要求覆盖特定区域的基站数量要多得多。在本文中,我们提出了在德克萨斯州奥斯汀市中心的一个小区域逐步部署5G网络的策略,使用该地区已有的4G LTE站点。然后根据几种电磁场(EMF)暴露限值分析拟议5G网络的辐射功率密度,并将其与仅存在LTE网络的同一区域的辐射水平进行比较。所选区域的模拟结果表明,由于增加了5G蜂窝塔,辐射水平显著增加。
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