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Hybrid Beamforming in mm-Wave MIMO Systems Having a Finite Input Alphabet

机译:具有有限输入字母的毫米波MIMO系统中的混合波束成形

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摘要

Recently, there has been significant research effort toward achieving high data rates in the millimeter wave bands by employing large antenna systems. These systems are considered to have only a fraction of the RF chains compared with the total number of antennas and employ analog phase shifters to steer the transmit and receive beams in addition to the conventional beamforming (BF)/combining invoked in the baseband domain. This scheme, which is popularly known as hybrid BF, has been extensively studied in the literature. To the best of our knowledge, all the existing schemes focus on obtaining the BF/combining matrices that maximize the system capacity computed using a Gaussian input alphabet. However, this choice of matrices may be suboptimal for practical systems, since they employ a finite input alphabet, such as quadrature amplitude modulation/phase-shift keying constellations. Hence, in this paper, we consider a hybrid BF/combining system operating with a finite input alphabet and optimize the analog as well as digital BF/combining matrices by maximizing the mutual information (MI). This is achieved by an iterative gradient ascent algorithm that exploits the relationship between the minimum mean-squared error and the MI. Furthermore, an iterative algorithm is proposed for designing a codebook for the analog and digital BF/combining matrices based on a vector quantization approach. Our simulation results demonstrate that the proposed gradient ascent algorithm achieves an ergodic rate improvement of up to 0.4 bits per channel use (bpcu) compared with the Gaussian input scenario. Furthermore, the gain in the ergodic rate achieved by employing the vector quantization-based codebook is about 0.5 bpcu compared with the Gaussian input scenario.
机译:近来,已经进行了大量的研究工作,以通过采用大型天线系统来实现毫米波段中的高数据速率。与天线总数相比,这些系统被认为仅具有RF链的一小部分,并且除了在基带域中调用的常规波束成形(BF)/组合之外,还采用模拟移相器来控制发射和接收波束。在文献中已经广泛研究了该方案,其被普遍称为混合BF。据我们所知,所有现有方案都集中于获得使高斯输入字母表所计算出的系统容量最大化的BF /组合矩阵。然而,对于矩阵的这种选择对于实际系统可能不是最佳的,因为它们采用有限的输入字母,例如正交幅度调制/相移键控星座图。因此,在本文中,我们考虑使用有限输入字母的混合BF /组合系统,并通过最大化互信息(MI)来优化模拟和数字BF /组合矩阵。这是通过利用最小均方误差与MI之间关系的迭代梯度上升算法实现的。此外,提出了一种迭代算法,用于基于矢量量化方法设计用于模拟和数字BF /组合矩阵的码本。我们的仿真结果表明,与高斯输入方案相比,所提出的梯度上升算法实现了每通道使用(bpcu)高达0.4位的遍历速率改进。此外,与基于高斯输入的情况相比,通过采用基于矢量量化的代码本所获得的遍历速率增益约为0.5 bpcu。

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