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Randomly-Directional Beamforming in Millimeter-Wave Multiuser MISO Downlink

机译:毫米波多用户MISO下行链路中的随机方向波束成形

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In this paper, the performance of opportunistic random beamforming (RBF) and the multiuser (MU) gain in millimeter-wave (mm-wave) MU multiple-input single-output (MISO) downlink systems are analyzed based on the uniform random single-path (UR-SP) channel model suitable for highly directional mm-wave radio propagation channels. It is shown that under the UR-SP channel model, RBF achieves linear sum rate scaling with respect to (w.r.t.) the number of transmit antennas and, furthermore, yields optimal sum rate performance when the number of transmit antennas is large, if the number of users increases linearly w.r.t. the number of transmit antennas. Several beam training and user selection methods are investigated to yield insights into the most effective beamforming and scheduling choice for mm-wave MU-MISO in various operating conditions. Simulation results validate our analysis based on asymptotic techniques for finite cases.
机译:在本文中,基于均匀随机单信号技术,分析了毫米波MU多输入单输出(MISO)下行链路系统中机会随机波束成形(RBF)的性能和多用户(MU)增益。路径(UR-SP)信道模型,适用于高度定向的毫米波无线电传播信道。结果表明,在UR-SP信道模型下,RBF实现了相对于(wrt)发射天线数量的线性求和速率缩放,此外,如果发射天线的数量很大,则RBF可获得最佳的求和速率性能。用户数线性增加发射天线的数量。研究了几种波束训练和用户选择方法,以深入了解毫米波MU-MISO在各种操作条件下的最有效波束形成和调度选择。仿真结果验证了基于渐近技术的有限情况下我们的分析。

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