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A Beam Steering Based Hybrid Precoding for MU-MIMO mmWave Systems

机译:MU-MIMO mmWave系统中基于波束控制的混合预编码

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摘要

We propose a hybrid precoding scheme for downlink multi-user multiple-input multiple-output (MU-MIMO) millimeter-wave (mmWave) systems. Firstly, the proposed precoder is designed by the beam steering condition and the zero-interference condition, which can be obtained with the information of angles of departure (AoDs) in frequency division duplex (FDD) systems. Then, the proposed precoder is decomposed into the radio frequency (RF) precoder and the baseband precoder without the loss of response. Also, array response vector selection algorithm is proposed to prevent the sum rate degradation in numerous users region. Simulation results show that the sum rate of the proposed hybrid precoder is higher than those of the block diagonalization (BD) based schemes in the region of more than 5 users and approaches the sum rate of the beam steering scheme without MU interference as the number of base station (BS) antennas increases.
机译:我们为下行链路多用户多输入多输出(MU-MIMO)毫米波(mmWave)系统提出了一种混合预编码方案。首先,通过波束转向条件和零干扰条件设计所提出的预编码器,可以通过频分双工(FDD)系统中的离开角(AoDs)信息来获得预编码器。然后,将所提出的预编码器分解为射频(RF)预编码器和基带预编码器,而不会损失响应。此外,提出了阵列响应矢量选择算法,以防止在多个用户区域中求和速率降低。仿真结果表明,在超过5个用户的区域内,所提出的混合预编码器的总速率高于基于块对角化(BD)的方案,并且在无MU干扰的情况下接近波束控制方案的总速率。基站(BS)天线增加。

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