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Simulation Model of 5G Coverage in Urban Areas

机译:城市地区5G覆盖率的仿真模型

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摘要

The introduction of 5G offers prospects for the development of various economic sectors due to many advantages of this technology. In connection with the active introduction of new communication and broadcasting systems, adequate modeling of radio wave propagation in urban environment becomes an urgent problem. Thus when frequency-territorial planning of the 5G system, it would be useful to calculate the signal behavior for a given frequency in the current conditions. In this paper, using the algorithm of three-dimensional ray tracing, the effects of multipath signal propagation under conditions of high-rise urban environment are simulated. The simulation of 5G system coverage in urban conditions is performed at two frequency bands (3.4-3.8 GHz and 24.25-29.5 GHz), taking two values of the transmitted signal frequency - 3.5 GHz in one case and 26 GHz in the other. The application of the proposed model during preliminary frequency-territorial planning of the system allows choosing the optimal location of the transmitter to ensure the maximum coverage area in the selected place. In addition, when given the location of the transmitter and the buildings, it allows selecting the best installation locations orientation of external subscriber antennas.
机译:由于这项技术的许多优势,5G引入5G提供了各种经济部门的发展前景。与新的通信和广播系统的主动引入有关,城市环境中的无线电波传播的充分建模成为一个紧迫的问题。因此,当5G系统的频率领域规划时,计算当前条件中给定频率的信号行为是有用的。本文使用三维射线跟踪算法,模拟了高层城市环境条件下多径信号传播的影响。在一个频段(3.4-3.8GHz和24.25-29.5GHz)的两个频段(3.4-3.8GHz和24.25-29.5 GHz)进行了5G系统覆盖的模拟,在一个案例中拍摄了两个传输信号频率-3.5 GHz的值,另一个频率 - 3.5 GHz。所提出的模型在系统的初步频率 - 领土规划期间应用允许选择发射器的最佳位置,以确保所选地位中的最大覆盖区域。另外,当给定发射器和建筑物的位置时,它允许选择外部用户天线的最佳安装位置方向。

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