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Low Complexity Hybrid Precoding for Broadband mmWave Massive MIMO Systems

机译:宽带毫米波大规模MIMO系统的低复杂度混合预编码

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Hybrid precoding becomes a candidate for Millimeter wave (mmWave) massive MIMO (Multiple-Input and Multiple-Output) systems because it can extremely reduce power consumption and high costs. Most prior work considered hybrid precoding for narrowband systems. However, wideband systems with frequency selectivity are likely to be operated in the future. In broadband systems, a common analogue precoder is designed for the overall frequency band whereas different digital precoders are employed in different subcarriers. In this paper, we propose the hybrid precoding schemes for broadband mmWave massive MIMO systems. First, the hybrid single-user (SU) algorithm is proposed for a single-user system. The common analogue precoding matrix is derived from the Equal Gain Transmission (EGT) method and the digital precoding matrices for different subcarriers are employed based on directly water-filling technique. Second, the hybrid multi-user (MU) algorithm is proposed for a multi-user system. Gram-Schmidt orthogonalization is added in the analogue domain and zero-forcing (ZF) is utilized for digital precoders in order to nullify inter-user interference. Simulation results show that our proposed hybrid schemes with low complexity can almost reach the performance of fully digital precoding algorithm and outperform other hybrid algorithms.
机译:混合预编码成为毫米波(mmWave)大规模MIMO(多输入和多输出)系统的候选者,因为它可以极大地降低功耗和高成本。大多数先前的工作都考虑了窄带系统的混合预编码。但是,将来可能会运行具有频率选择性的宽带系统。在宽带系统中,为整个频带设计了通用的模拟预编码器,而在不同的子载波中采用了不同的数字预编码器。在本文中,我们提出了宽带毫米波大规模MIMO系统的混合预编码方案。首先,提出了一种针对单用户系统的混合单用户(SU)算法。通用模拟预编码矩阵是从等增益传输(EGT)方法得出的,并且基于直接注水技术,针对不同子载波采用了数字预编码矩阵。其次,针对多用户系统提出了混合多用户(MU)算法。在模拟域中添加了Gram-Schmidt正交化功能,并将零强制(ZF)用于数字预编码器,以消除用户之间的干扰。仿真结果表明,我们提出的低复杂度混合方案几乎可以达到全数字预编码算法的性能,并且优于其他混合算法。

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