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Cluster Characterization of 3-D MIMO Propagation Channel in an Urban Macrocellular Environment

机译:城市宏蜂窝环境中3-D MIMO传播信道的聚类表征

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Multidimensional characterization of outdoor urban macrocellular propagation channels is essential for the analysis and design of next-generation (5G and beyond) cellular massive MIMO (multiple-input-multiple-output) systems. Since most massive MIMO arrays will extend in two or three dimensions, an understanding of 3-D parameters (i.e., azimuth and elevation) of the multipath components (MPCs) is required. This paper presents an extensive measurement campaign for 3-D outdoor propagation channels in an urban macrocellular environment. Measurements were performed with a 20 MHz wideband polarimetric MIMO channel sounder centered at 2.53 GHz and MPCs were extracted using RIMAX-an iterative maximum likelihood algorithm. The physical propagation mechanisms of the observed discrete MPCs are explained in terms of waveguiding, over-the-rooftop propagation, and scattering by far-away objects. MPCs exhibit clustering in the temporal and spatial domains; both intra- and inter-cluster parameters and their relevant statistics are provided. We also extract diffuse MPCs, show that they can comprise a moderate portion of the overall energy, and provide a statistical characterization.
机译:户外城市宏蜂窝传播信道的多维表征对于下一代(5G及更高版本)蜂窝大规模MIMO(多输入多输出)系统的分析和设计至关重要。由于大多数大规模MIMO阵列将在二维或三维中扩展,因此需要了解多径分量(MPC)的3-D参数(即方位角和仰角)。本文提出了针对城市宏蜂窝环境中的3D室外传播通道的广泛测量方案。使用以2.53 GHz为中心的20 MHz宽带极化MIMO信道探测仪进行测量,并使用RIMAX(一种迭代最大似然算法)提取MPC。从波导管,屋顶上的传播以及远处物体的散射方面解释了观察到的离散MPC的物理传播机制。 MPC在时间和空间域中表现出聚类;提供了集群内和集群间参数以及它们的相关统计信息。我们还提取了扩散的MPC,表明它们可以构成总能量的适中部分,并提供统计特征。

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