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Cluster-based analysis of 3D MIMO channel measurement in an urban environment

机译:基于聚类的城市环境中3D MIMO信道测量分析

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Massive MIMO (multiple - input - multiple - output) and full-dimensional MIMO systems in next-generation cellular communications systems as well as high-data-rate military systems have garnered considerable attention recently. For the assessment of their performance, knowledge of the 3D propagation channel characteristics, i.e., azimuth and elevation of the multipath components (MPCs) is essential. In this paper, we present first results of a 3D outdoor propagation channel measurement campaign performed in an urban macro-cellular environment. The measurements were performed with a 20 MHz wideband polarimetric MIMO channel sounder centered at 2.53 GHz. At each measurement location, parameters of all MPCs observed were extracted with RIMAX, an iterative maximum likelihood high-resolution algorithm. It was observed that MPCs naturally grouped into clusters. We then present a cluster-based analysis of the propagation channel providing some results of the intra and inter cluster parameters and their relevant statistics. Correlation between all extracted cluster parameters are also provided. Parameters such as elevation and azimuth spread (at the base-station) in this work have been used as input to recent international channel model standardization.
机译:下一代蜂窝通信系统以及高数据速率军事系统中的大规模MIMO(多输入多输出)和全尺寸MIMO系统近来引起了广泛关注。为了评估其性能,必须了解3D传播通道特性,即多径分量(MPC)的方位角和仰角。在本文中,我们介绍了在城市宏蜂窝环境中进行的3D户外传播通道测量活动的初步结果。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。在每个测量位置,使用迭代最大似然高分辨率算法RIMAX提取观察到的所有MPC的参数。据观察,MPC自然地分成了簇。然后,我们提出了基于传播路径的基于聚类的分析,提供了聚类内和聚类参数及其相关统计数据的一些结果。还提供了所有提取的群集参数之间的相关性。在这项工作中,诸如仰角和方位角扩展(在基站处)之类的参数已被用作最新国际信道模型标准化的输入。

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