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首页> 外文期刊>IEEE Antennas and Wireless Propagation Letters >On the Contribution of Dense Multipath Components in an Intrawagon Environment for 5G mmW Massive MIMO Channels
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On the Contribution of Dense Multipath Components in an Intrawagon Environment for 5G mmW Massive MIMO Channels

机译:关于5G MMW大规模MIMO通道内致密多径组件在内桥环境中的贡献

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摘要

In this letter, the dependence of the specular multipath components (SMC) and dense multipath components (DMC) to the interuser spatial correlation and sum-rate capacity of a massive multiuser multiple-input--multiple-output (MU-MIMO) setup is evaluated from measurements conducted inside an underground subway wagon at the 25-40 GHz candidate frequency bands for 5G systems. The radio channel consists in a 7 7 uniform rectangular array (URA) acting as access point for eight users uniformly distributed in the wagon. The DMC power ratio is observed to be distance- and frequency-dependent as the SMC and DMC exhibit different propagation mechanisms. Remarkably, it is reported that the interuser spatial correlation computed with DMC offers the best favorable propagation for a massive MIMO setup, whereas SMC contribute to the users correlation. Hence, correlation is found to be strongly dependent on the DMC ratio frequency characteristics. In addition, better interuser correlation and sum-rate capacity values are obtained as the frequency is increased. These results highlight the need to include DMC in 5G massive MIMO channel models and emulators to improve their accuracy at the system level.
机译:在这封信中,镜面多路径组件(SMC)和密集多路径组件(DMC)对额外多用户多输出(MU-MIMO)设置的间隔空间相关和SUM速率容量的依赖性通过在25-40GHz候选频带为5G系统的25-40 GHz候选频段内进行的测量评估。无线电通道由7 7均匀的矩形阵列(URA)组成,其作为八个用户均匀分布在车辆中的八个用户的接入点。当SMC和DMC表现出不同的传播机制时,观察到DMC功率比为距离和频率依赖性。值得注意的是,据报道,使用DMC计算的间隔空间相关性为大规模MIMO设置提供了最佳的良好传播,而SMC则为用户提供相关性。因此,发现相关性强烈地取决于DMC比率频率特性。此外,在增加频率时获得更好的间隔相关性和总和速率容量值。这些结果突出了在5G大规模MIMO通道模型和仿真器中包含DMC的需要,以提高系统级别的准确性。

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