Common amplitude-weighted analog beamforming in multiuser millimeter wave communication systems

Wendi Wang, Huarui Yin, Xiaohui Chen, Weidong Wang
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Abstract

In millimeter wave (mmWave) Multiple-Input Multiple-Output (MIMO) multiuser communication systems, Hybrid BeamForming (HBF) has been widely studied to make a balance between performance and hardware costs. However, the design of HBF requires either full Channel State Information (CSI) or the knowledge of equivalent channel, which brings heavy training and feedback overhead. In the paper, we propose a novel pure Analog BeamForming (ABF) method to reduce the training overhead and suppress the inter-user interference without digital beamforming. More specifically, we split the whole ABF process into two stages: standard beamforming at a special direction and spatial angle modulation. The former is realized by a common amplitude-weighted network shared by all links, while the latter is realized by a phase shifter network. Compared with the existing HBF methods, the proposed twostage ABF method does not require extra analog hardware components, and the digital beamforming process is removed. The training overhead of channel estimation can also be greatly reduced. Both theoretical analysis and numerical results show that this two-stage ABF method can outperform the HBF methods, especially in the medium and low SNR regime of pilot signals.
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多用户毫米波通信系统中常用振幅加权模拟波束形成
在毫米波(mmWave)多输入多输出(MIMO)多用户通信系统中,为了在性能和硬件成本之间取得平衡,混合波束形成(HBF)得到了广泛的研究。然而,HBF的设计需要完整的信道状态信息(CSI)或等效信道的知识,这带来了繁重的训练和反馈开销。本文提出了一种新的纯模拟波束形成(ABF)方法,在不使用数字波束形成的情况下减少训练开销,抑制用户间干扰。更具体地说,我们将整个ABF过程分为两个阶段:特定方向的标准波束形成和空间角度调制。前者通过各链路共享的幅值加权网络实现,后者通过移相网络实现。与现有的HBF方法相比,所提出的两级ABF方法不需要额外的模拟硬件组件,并且省去了数字波束形成过程。信道估计的训练开销也可以大大减少。理论分析和数值结果表明,该方法在中低信噪比的导频信号中具有明显的优越性。
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