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Characterization of Human Body Shadowing in Measured Millimeter-wave Indoor Channels

机译:测量毫米波室内通道中人体遮蔽的特征

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In this paper, the human shadowing effect is studied at the millimeter-wave band centered at 28 GHz. The analysis takes a holistic view of the opportunities and challenges that are brought by the presence of a human in the millimeter-wave channel. The impact of human body shadowing on the antenna array performance is investigated, where the impairments due to the non-stationarity over the antenna array caused by human-induced shadowing are presented. The spatial-delay information is obtained using a frequency-invariant beamforming algorithm. The measured channel in a free space scenario is compared with the channel when a human subject and a metallic cylinder of similar size to the human subject are present in the channel. The results show that despite a high shadowing attenuation when the human blocks the propagation paths, there are opportunities presented by the presence of the human which can enhance the spatial diversity of the channel at some spatial locations.
机译:在本文中,在以28GHz为中心的毫米波带研究了人的遮蔽效果。分析采取了通过在毫米波通道中存在的机会和挑战的整体视图。提出了人体对天线阵列性能的影响,其中提出了由人诱导的阴影引起的天线阵列上的非公平性引起的损伤。使用频率不变的波束成形算法获得空间延迟信息。在通道中存在当人类受试者和类似尺寸的类似尺寸的尺寸的通道进行比较自由空间场景中的测量信道。结果表明,尽管当人阻挡传播路径时,尽管存在高阴影衰减,但是存在人类存在的机会,其可以在一些空间位置增强通道的空间分集。

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