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Gram Schmidt based greedy hybrid precoding for frequency selective millimeter wave MIMO systems

机译:频率选择性毫米波MIMO系统中基于Gram Schmidt的贪婪混合预编码

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Hybrid analog/digital precoding allows millimeter wave MIMO systems to leverage large antenna array gains while permitting low cost and power consumption hardware. Most prior work has focused on hybrid precoding for narrow-band mmWave systems. MmWave systems, however, will likely operate on wideband channels with frequency selectivity. Therefore, this paper considers frequency selective hybrid precoding with RF beamforming vectors taken from a quantized codebook. For this system, a low-complexity yet near-optimal greedy algorithm is developed for the design of the hybrid analog/digital precoders. The proposed algorithm greedily selects the RF beamforming vectors using Gram-Schmidt orthogonalization. Simulation results show that the developed precoding design algorithm achieves very good performance compared with the unconstrained solutions while requiring less complexity.
机译:混合模拟/数字预编码允许毫米波MIMO系统利用大天线阵列增益,同时允许低成本和低功耗的硬件。先前的大多数工作都集中在针对窄带mmWave系统的混合预编码上。但是,MmWave系统可能会在具有频率选择性的宽带信道上运行。因此,本文考虑了采用从量化码本中提取的RF波束成形向量的频率选择性混合预编码。对于该系统,开发了一种低复杂度但接近最佳的贪婪算法,用于混合模拟/数字预编码器的设计。所提出的算法使用Gram-Schmidt正交化贪婪地选择RF波束形成矢量。仿真结果表明,与无约束解决方案相比,所开发的预编码设计算法具有很好的性能,并且所需的复杂度更低。

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