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Millimeter-Wave Human Blockage at 73 GHz with a Simple Double Knife-Edge Diffraction Model and Extension for Directional Antennas

机译:具有简单双刀刃衍射模型和定向天线扩展功能的73 GHz毫米波人体阻挡

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This paper presents 73 GHz human blockage measurements for a point-to-point link with a 5 m transmitter-receiver separation distance in an indoor environment, with a human that walked at a speed of approximately 1 m/s at a perpendicular orientation to the line between the transmitter and receiver, at various distances between them. The experiment measures the shadowing effect of a moving human body when using directional antennas at the transmitter and receiver for millimeter- wave radio communications. The measurements were conducted using a 500 Megachips-per-second wideband correlator channel sounder with a 1 GHz first null-to-null RF bandwidth. Results indicate high shadowing attenuation is not just due to the human blocker but also is due to the static directional nature of the antennas used, leading to the need for phased-array antennas to switch beam directions in the presence of obstructions and blockages at millimeter-waves. A simple model for human blockage is provided based on the double knife-edge diffraction (DKED) model where humans are approximated by a rectangular screen with infinite vertical height, similar to the human blockage model given by the METIS project.
机译:本文介绍了在室内环境中点对点链路,发射器与接收器之间的距离为5 m的点对点链路的73 GHz人体阻塞测量结果,以垂直于人体的垂直方向以大约1 m / s的速度行走的人发射器和接收器之间的直线,它们之间的距离各不相同。当在毫米波无线电通信的发射器和接收器处使用定向天线时,该实验测量了移动的人体的阴影效果。使用具有每秒1 GHz第一空对零RF带宽的500 Megachips /秒宽带相关器通道测深仪进行测量。结果表明,较高的阴影衰减不仅是由于人为障碍造成的,而且还归因于所用天线的静态定向特性,导致需要相控阵天线在毫米级障碍物和障碍物存在的情况下切换波束方向。波浪。基于双刀刃衍射(DKED)模型提供了一个简单的人为封锁模型,其中人由具有无限垂直高度的矩形屏幕近似,类似于METIS项目提供的人为封锁模型。

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