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Compressed Beam Alignment with Out-of-Band Assistance in Millimeter Wave Cellular Networks

机译:压缩光束对齐与毫米波蜂窝网络中的带外辅助

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Network transmission over millimeter-wave (mmW) bands has a big potential to provide orders of higher bandwidth. However, beamforming is generally needed to compensate for the high path loss. As mmW antennas have a potentially large number of candidate beamforming directions, to achieve high network throughput, the finding of a high gain direction between a base station and each mobile in the mmW network may involve a large overhead if training signals are directly sent along all possible directions or according to a large volume of codebook. Taking advantage of the block sparse characteristics of the mmW channel and coexistence of legacy antennas, we propose a comprehensive design for more efficient beam direction finding. Different from existing compressive-sensing-based schemes which just take a random subset of directions to measure, taking advantage of the path clustering feature of the mmW channel, we develop a self-adaptive block sparse algorithm which can benefit from preliminary channel estimation during each iteration of the problem solving to significantly improve the overall channel estimation accuracy thus the beam alignment gain. We also explore two methods to exploit co-located legacy antennas to provide further guidance for transmission direction finding. Simulation results indicate that our proposed beam alignment scheme outperforms the baseline and peer schemes in terms of the beamforming gain and training cost. By taking advantage of the block sparse properties of mmW channel, our proposed design is able to achieve the transmission throughput comparable with the exhaustive direction search at much lower overhead.
机译:网络传输超过毫米波(MMW)频带具有较大的潜力,可以提供更高带宽的订单。然而,通常需要波束成形来补偿高路径损耗。由于MMW天线具有潜在大量的候选波束成形方向,以实现高网络吞吐量,在基站和MMW网络中的每个移动台之间的找到高增益方向可能涉及如果训练信号直接发送所有训练信号,则可以涉及大开销可能的方向或根据大量的码本。利用MMW通道的块稀疏特性和传统天线的共存,我们提出了一种综合设计,以实现更高效的光束方向。不同于现有的基于压缩感测的方案,其刚采用随机的方向的措施来测量,利用MMW通道的路径聚类特征,我们开发了一种自适应块稀疏算法,其可以在每个初步信道估计中受益于初步信道估计解决问题的迭代以显着提高整体信道估计精度,从而显着提高了光束对准增益。我们还探讨了两种用于利用共同定位的传统天线的方法,以提供进一步的传输方向查找指导。仿真结果表明,我们所提出的光束对准方案在波束形成增益和培训成本方面优于基线和对等方案。通过利用MMW通道的块稀疏性质,我们所提出的设计能够实现与穷举方向搜索相当的传输吞吐量,在得多的下面的开销。

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