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Rough surface scattering from exterior walls at 28 GHz

机译:外壁在28 GHz处产生的粗糙表面散射

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In this study we investigated the Local Multipoint Distribution Service band (28 GHz) rough surface scattering properties of limestone and brick walls. Our ultimate goal is to understand the characteristics of radio paths that involve one or more bounces from these walls. In the experiment described here, we processed impulse response data to produce power delay profiles and calculate relevant channel metrics. In particular, we investigated the scattered signal behavior for different incident angles and transmitter-receiver geometries. Using the reflected pulse width and maximum excess delay derived from each power delay profile, we found that limestone and brick walls exhibited measurable diffuse scattering. The reflected pulse from a limestone wall has more maximum excess delay spread than does a brick wall at the -15 dB power threshold. The mean maximum excess delay for the reflected pulse for the limestone wall measurement configurations was more than twice that of the brick wall. With equal transmitter and receiver distances to the wall, we found that the maximum excess delay decreased and the perpendicular reflection coefficient increased with incident angle.
机译:在这项研究中,我们研究了石灰石和砖墙的本地多点分配服务频段(28 GHz)的粗糙表面散射特性。我们的最终目标是了解涉及从这些墙壁反弹一次或多次的无线电路径的特性。在此处描述的实验中,我们处理了脉冲响应数据以产生功率延迟曲线并计算相关的信道指标。特别是,我们研究了不同入射角和发射器-接收器几何形状的散射信号行为。使用从每个功率延迟曲线得出的反射脉冲宽度和最大过剩延迟,我们发现石灰石和砖墙表现出可测量的漫散射。在-15 dB功率阈值下,石灰石墙反射的脉冲比砖墙具有更大的最大延迟扩展。石灰石墙测量配置的反射脉冲的平均最大超额延迟是砖墙的两倍以上。当发射器和接收器到墙壁的距离相等时,我们发现最大过量延迟减小,垂直反射系数随入射角增大。

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