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Beam management for millimeter wave beamspace MU-MIMO systems

机译:毫米波波束空间MU-MIMO系统的波束管理

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Millimeter wave (mmWave) communication has attracted increasing attention as a promising technology for 5G networks. One of the key architectural features of mmWave is the use of massive antenna arrays at both the transmitter and the receiver sides. Therefore, by employing directional beamforming (BF), both mmWave base stations (MBSs) and mmWave users (MUEs) are capable of supporting multi-beam simultaneous transmissions. However, most researches have only considered a single beam, which means that they do not make full potential of mmWave. In this context, in order to improve the performance of short-range indoor mmWave networks with multiple reflections, we investigate the challenges and potential solutions of downlink multi-user multi-beam transmission, which can be described as a high-dimensional (i.e., beamspace) multi-user multiple-input multiple-output (MU-MIMO) technique, including multi-user BF training, simultaneous users' grouping, and multi-user multi-beam power allocation. Furthermore, we present the theoretical and numerical results to demonstrate that beamspace MU-MIMO compared with single beam transmission can largely improve the rate performance of mmWave systems.
机译:作为5G网络的一项有前途的技术,毫米波(mmWave)通信已引起越来越多的关注。 mmWave的关键体系结构特征之一是在发射器和接收器侧均使用大型天线阵列。因此,通过采用定向波束成形(BF),mmWave基站(MBS)和mmWave用户(MUE)均能够支持多波束同时传输。但是,大多数研究仅考虑了单个光束,这意味着它们无法充分发挥mmWave的潜力。在这种情况下,为了改善具有多个反射的短距离室内mmWave网络的性能,我们研究了下行链路多用户多波束传输的挑战和可能的解决方案,这可以描述为高维度(即, (beamspace)多用户多输入多输出(MU-MIMO)技术,包括多用户BF训练,同时用户分组和多用户多波束功率分配。此外,我们提供了理论和数值结果,以证明与单波束传输相比,波束空间MU-MIMO可以大大提高mmWave系统的速率性能。

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