Channel Rank Analysis of an Outdoor-to-Indoor Massive MIMO Measurement

Daniel Schützenhöfer, Stefan Pratschner, H. Groll, M. Rupp
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引用次数: 1

Abstract

Massive multiple-input multiple-output (MIMO) communication often assumes propagation with a dense scattering environment. In this context, we performed an outdoor-to indoor massive MIMO channel measurement. To analyze the multipath components (MPCs) we apply the concept of a double directional radio channel. We evaluate the two-dimensional angular power-spectral density, which shows the amount of power that was carried over a certain Direction of Departure (DOD) -Direction of Arrival (DOA) pair. The estimation of the angular power-spectral density is achieved by an conventional beam-former. The beamforming results lead to the conclusion that the channel may be described by a low number of MPCs. To analyze the rank of the wireless channel, we compare the achievable rate for the measured channel with low rank approximated versions. The result shows that the measured outdoor-to-indoor MIMO channel is approximated well with a low rank channel model.
室外到室内大规模MIMO测量的信道等级分析
大规模多输入多输出(MIMO)通信通常假定在密集散射环境中传播。在这种情况下,我们进行了室外到室内的大规模MIMO信道测量。为了分析多径分量(mpc),我们应用了双向无线电信道的概念。我们评估了二维角功率谱密度,它显示了在一定的出发方向(DOD) -到达方向(DOA)对上携带的功率量。角功率谱密度的估计是由传统的波束形成器实现的。波束形成的结果表明,信道可以用少量的mpc来描述。为了分析无线信道的秩,我们比较了测量信道与低秩近似信道的可实现速率。结果表明,采用低秩信道模型可以很好地逼近室外到室内的MIMO信道。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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