3D propagation and environment modeling for NLOS wireless small-cell backhaul

F. Letourneux, S. Guivarch, Y. Lostanlen
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引用次数: 4

Abstract

This paper presents an overview of challenges and solutions for small-cell wireless backhaul. The different technologies, ranging from 3.5 to 80 GHz, are presented with a focus on radio propagation. Then, the new related design challenges are studied. A first case study shows the benefit of ray-tracing and 3D geographical map data for accurate NLOS link prediction. The use of a vertical-plane model can lead to large errors. Finally, the impact of antenna orientation is analyzed at 3.5 and 28 GHz. An optimum antenna orientation is key for an efficient design, especially at high frequencies. Different configurations for which the direct path is not the strongest are presented. In that case, a ray-tracing model is required.
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NLOS无线小小区回程的三维传播与环境建模
本文概述了小蜂窝无线回程面临的挑战和解决方案。不同的技术,从3.5到80 GHz,重点介绍无线电传播。然后,研究了新的相关设计挑战。第一个案例研究显示了光线追踪和3D地理地图数据对精确的NLOS链路预测的好处。使用垂直平面模型会导致很大的误差。最后,分析了3.5 GHz和28 GHz下天线方向的影响。最佳的天线方向是高效设计的关键,特别是在高频下。给出了直接路径不是最强的不同配置。在这种情况下,需要光线追踪模型。
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