Hybrid analog-digital downlink beamforming for massive MIMO system with uniform and non-uniform linear arrays

Z. Phyo, A. Taparugssanagorn
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引用次数: 10

Abstract

In this paper, a hybrid analog-digital beamforming technique for downlink massive multiple input multiple output (MIMO) system is studied. The performances of fully analog beamforming, fully digital beamforming, and hybrid beamforming are to be examined when applying both uniform and non-uniform linear arrays. For this system, first perfect channel estimation is assumed at the base station and the procession time at each case is computed and compared. For non-uniform linear arrays, binomial and Dolph-Chebyshev arrays are applied to hybrid beamforming to reduce the sidelobes as well as maximize the directivity of array pattern, respectively. By varying the number of radio frequency (RF) chains, hybrid, fully digital and fully analog beamformings can be examined. Simulation results show that the performance of hybrid beamforming is very similar to that of fully digital beamforming. In addition, the program running time reflecting the complexity of the systems show that the hybrid case can be reduced it while achieving similar spectral efficiency to the fully digital one. The simulation results of applying non-uniform linear array to hybrid beamforming indicates that the performances increased significantly than the uniform linear arrays. Therefore, we can conclude that the hybrid beamforming can approach the fully digital beamforming solutions by applying non-uniform linear arrays, while requiring lower power complexity.
均匀和非均匀线性阵列大规模MIMO系统的混合模拟-数字下行波束形成
本文研究了一种用于下行海量多输入多输出(MIMO)系统的模数混合波束形成技术。当应用均匀和非均匀线性阵列时,将检查全模拟波束形成、全数字波束形成和混合波束形成的性能。在该系统中,首先假设在基站处进行完美信道估计,并对每种情况下的处理时间进行计算和比较。对于非均匀线性阵列,分别采用二项阵和道尔夫-切比雪夫阵进行混合波束形成,以减小副瓣和最大化阵列方向图的指向性。通过改变射频(RF)链的数量,可以检测混合、全数字和全模拟波束形成。仿真结果表明,混合波束形成的性能与全数字波束形成非常接近。此外,反映系统复杂性的程序运行时间表明,混合情况可以在获得与全数字情况相似的频谱效率的同时减少它。将非均匀线阵应用于混合波束形成的仿真结果表明,混合波束形成的性能比均匀线阵有明显提高。因此,我们可以得出结论,混合波束形成可以通过应用非均匀线性阵列来接近全数字波束形成解决方案,同时需要更低的功率复杂度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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