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Hybrid Beamforming Analysis Based on MIMO Channel Measurements at 28 GHz

机译:基于MIMO信道测量的混合波束形成分析在28 GHz

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Hybrid beamforming systems represent an efficient architectural solution to realize massive multiple-input multipleoutput (MIMO) communication systems in the centimeter wave (cmW) and millimeter wave (mmW) region. These hybrid beamforming systems separate the beamforming process into a digital and analog beamforming network. The analog beamforming networks can be realized by different architectural solutions, which demand dedicated algorithms to determine the complex weighting factors in the digital and analog domain. To date, novel hybrid beamforming architectures and algorithms are solely compared in numerical simulations based on statistical channel models. These abstract channel models simplify the complicated electromagnetic propagation process, thereby not exactly reconstructing the wireless channel. Within this work, we present a measurement-based evaluation of hybrid beamforming algorithms and compare them with numerical results gained from a statistical path-based MIMO channel model. The results show that by adjustment of the channel model parameter the simulation achieves a good match with the measured maximum achievable spectral efficiencies.
机译:混合波束形成系统代表了一种有效的架构解决方案,以实现厘米波(CMW)和毫米波(MMW)区域中的大规模多输入多筹(MIMO)通信系统。这些混合波束形成系统将波束成形过程分成数字和模拟波束形成网络。模拟波束成形网络可以通过不同的架构解决方案实现,这些网络需要专用算法来确定数字和模拟域中的复重因子。迄今为止,在基于统计信道模型的数值模拟中单独比较新的混合波束形成架构和算法。这些抽象通道模型简化了复杂的电磁传播过程,从而不完全重建无线信道。在这项工作中,我们提出了一种基于测量的混合波束形成算法的评估,并将它们与从基于统计路径的MIMO信道模型中获得的数值结果进行比较。结果表明,通过调整频道模型参数,模拟实现了与测量的最大可实现的光谱效率良好的匹配。

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