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Beamwidth-Dependent Directional Propagation Loss Analysis Based on 28 and 38 GHz Urban Micro-Cellular (UMi) Measurements

机译:基于28和38 GHz城市微蜂窝(UMi)测量的与波束宽度有关的定向传播损耗分析

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Associated with millimeter-wave (mmWave) 5G, high-gain directional beamforming is being considered as a key technology for overcoming considerable propagation loss. When there is a single dominant propagation path between a transmit- ter and a receiver, this high- gain directional beamforming will be effective. However, when a receiver receives signals from various directions, as is typical in (multipath-rich) mobile environments, increasing directivity gain (by narrowing the beamwidth) at specific directions may block multipath signals from other directions due to the narrowed beamwidth. This will decrease the overall signal power reception. In this paper, we investigate beamwidth-dependent directional propagation loss behaviors based on 28 and 38 GHz measurements. The measurement data were collected in a typical urban micro-cellular environment where many objects and surrounding buildings compose multipath-rich propagation environments. To save measurement time and efforts, we conducted the measurements with a narrow 10o HPBW (half power beamwidth) antenna and then synthesized other beamwidth characteristics. Our results show that there is an inversely proportional relationship between the beamwidth and the power loss compared to the omnidirectional antenna reception. Although we analyzed with limited data only at 28 and 38 GHz, we believe that these characteristics will be helpful in developing mmWave 5G systems.
机译:与毫米波(mmWave)5G相关联,高增益定向波束成形被认为是克服相当大的传播损耗的关键技术。当发射器和接收器之间只有一条主要的传播路径时,这种高增益定向波束形成将是有效的。但是,当接收器从各种方向接收信号时(如在(多径路径丰富)移动环境中的典型情况),由于波束宽度变窄,在特定方向上增加的方向性增益(通过使波束宽度变窄)可能会阻止来自其他方向的多径信号。这将降低整体信号功率接收。在本文中,我们基于28 GHz和38 GHz测量研究了依赖于波束宽度的定向传播损耗行为。在典型的城市微蜂窝环境中收集了测量数据,在该环境中许多物体和周围的建筑物构成了多径传播的传播环境。为了节省测量时间和精力,我们使用狭窄的10 o HPBW(半功率波束宽度)天线进行了测量,然后合成了其他波束宽度特性。我们的结果表明,与全向天线接收相比,波束宽度和功率损耗之间存在反比关系。尽管我们仅以28 GHz和38 GHz的有限数据进行了分析,但我们相信这些特性将有助于开发mmWave 5G系统。

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