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5G Millimeter-Wave NLOS Coverage Using Specular Building Reflections

机译:使用镜面建筑物反射实现5G毫米波NLOS覆盖

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Maximization of 5G millimeter-wave base station coverage and range is important to reduce the number of required base stations. Buildings could be used as reflectors to provide coverage in NLOS areas due to their high reflectivity at millimeter-waves. This paper presents the results of a measurement campaign investigating specular reflections from buildings at 24.00-24.25 GHz. The angle of minimum path loss for single-building reflections agrees well with the direction of the specular path. This agreement is less accurate in case of a double-building reflection, possibly due to obstructions in the specular path or multipath fading. In case of a single-building reflection, 1-9 dB excess loss compared to free-space path loss is measured. The excess loss is in the range of 9-20 dB for a double-building reflection. Although more research on this topic is required, these results are promising and indicate that buildings can be used as effective millimeter-wave reflectors.
机译:5G毫米波基站的覆盖范围和范围的最大化对于减少所需基站的数量非常重要。由于建筑物在毫米波处具有高反射率,因此它们可以用作反射器以在NLOS区域提供覆盖。本文介绍了一项测量活动的结果,该活动研究了建筑物在24.00-24.25 GHz处的镜面反射。单建筑物反射的最小路径损耗的角度与镜面路径的方向非常吻合。在双重建筑物反射的情况下,此协议的准确性较差,这可能是由于镜面路径中的障碍物或多路径衰落所致。在单建筑物反射的情况下,与自由空间路径损耗相比,将测量1-9 dB的额外损耗。对于双重建筑物反射,过量损耗在9-20 dB的范围内。尽管需要对此主题进行更多研究,但这些结果是有希望的,并表明建筑物可以用作有效的毫米波反射器。

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