5G通信回程网络的毫米波信道统计建模

M. Mowla, Hussnin Binte Hamid Dutty, I. Ahmad
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引用次数: 3

摘要

飞速增长的移动通信需求促使研究人员开发毫米波(mmWave)频段(10 GHz至300 GHz)的巨大频谱,以促进下一代5G网络的高容量回程通道(基站到核心网)。然而,由于高传播损耗、环境衰减、吸收损耗和阻塞敏感性,回程网络的信道建模仍然具有挑战性。本研究将使用一种新颖的模拟器NYUSIM,研究在特定毫米波频段28ghz的视距(LOS)和非视距条件下回程网络的统计毫米波信道建模。我们考虑一个城市宏小区方案,其操作的无线电频率带宽高达800兆赫。仿真考虑了波束运动(到达和离开)、功率延迟分布(全向、定向、小尺度)和路径损耗等关键参数。这些研究可以用来展示28ghz毫米波频段的潜力及其在未来5G回程网络设计中的价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Statistical mmWave Channel Modeling for Backhaul Networks in 5G Communications
The skyrocketing mobile traffic demand drives the researchers to exploit the enormous spectrum in the millimeter wave (mmWave) bands (10 GHz to 300 GHZ) to facilitate high capacity backhaul channel (base stations to core network) for the next generation 5G networks. However, channel modeling is still challenging for backhaul networks due to high propagation loss, environmental attenuation, absorption loss, and sensitivity of blockage. This research will investigate a statistical mmWave channel modeling for backhaul networks in case of both line-ofsight (LOS) and non-LOS conditions at a particular mmWave band 28 GHz using by a novel simulator NYUSIM. We consider a urban macro cell scenario which operates a radio frequency bandwidth up to 800 MHz. Simulation was performed considering on some crucial parameters such as beam movements (arrival and departure), power delay profiles (omnidirectional, directional, small scale), and path losses. These investigations may be utilized to exhibit the potential of 28 GHz mmWave band and its worthy for the design of future 5G backhaul networks.
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