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On the Performance of Random Beamforming in Sparse Millimeter Wave Channels

机译:稀疏毫米波信道中随机波束成形的性能研究

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The performance of random beamforming (RBF) with partial channel state information (CSI) feedback is investigated here for millimeter wave (mmWave) multiuser multiple-input single-output (MU-MISO) downlink systems using the uniform random multipath (UR-MP) channel model. In particular, the required number of users in the cell for RBF to yield linear sum rate scaling with respect to the number of transmit antennas is identified under the UR-MP channel model for different levels of channel sparsity. Then, the problem of user scheduling in MU-MISO downlink is considered when the number of users in the cell is not sufficiently large (sparse user regime) for the system to operate in the identified sufficient user regime. By exploiting the sparsity of mmWave radio channels, several user scheduling algorithms based on beam aggregation with reasonable amount of feedback are proposed for the sparse user regime. Our numerical results show that the proposed algorithms yield very good sum-rate performance in sparse mmWave channels.
机译:本文针对使用统一随机多径(UR-MP)的毫米波(mmWave)多用户多输入单输出(MU-MISO)下行链路系统,研究了具有部分信道状态信息(CSI)反馈的随机波束成形(RBF)的性能渠道模型。特别是,在UR-MP信道模型下,针对不同级别的信道稀疏度,确定了RBF在小区中需要用户数量以使RBF相对于发射天线的数量产生线性和速率缩放。然后,当小区中的用户数量不够大(稀疏用户状态)以使系统无法在确定的足够用户状态下运行时,将考虑MU-MISO下行链路中的用户调度问题。通过利用毫米波无线电信道的稀疏性,针对稀疏用户机制,提出了几种基于波束聚合且反馈量合理的用户调度算法。我们的数值结果表明,所提出的算法在稀疏mmWave信道中具有非常好的求和速率性能。

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