全维大规模MIMO系统的空间相关特性

Qurrat-Ul-Ain Nadeem, A. Kammoun, M. Debbah, Mohamed-Slim Alouini
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引用次数: 9

摘要

仰角波束形成和全尺寸MIMO (FD-MIMO)是目前3GPP LTE-Advanced研究和标准化的活跃领域。FD-MIMO利用有源天线阵列系统(AAS),提供了对仰角尺寸进行自适应电子束控制的能力,与传统的2D MIMO系统相比,系统性能更好。当与大规模MIMO系统合并时,FD-MIMO更具优势,因为它利用了大量天线在仰角中提供的额外自由度。为了便于对这些系统进行评估,需要在3D通道建模方面进行大量工作。本文旨在总结最近围绕3D通道建模的3GPP活动。3GPP提出的天线辐射方向图建模方法与ITU的方法进行了比较。然后利用球面谐波和勒让德多项式的结果,推导出由阵列中单个天线单元构成的信道的空间相关函数的封闭表达式。该表达式可用于获得任意三维传播环境下的相关系数。仿真结果证实并研究了推导的空间相关表达式。研究结果可直接应用于未来5G 3D大规模MIMO系统的分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spatial Correlation Characterization of a Full Dimension Massive MIMO System
Elevation beamforming and Full Dimension MIMO (FD-MIMO) are currently active areas of research and standardization in 3GPP LTE-Advanced. FD-MIMO utilizes an active antenna array system (AAS), that provides the ability of adaptive electronic beam control over the elevation dimension, resulting in a better system performance as compared to the conventional 2D MIMO systems. FD-MIMO is more advantageous when amalgamated with massive MIMO systems, in that it exploits the additional degrees of freedom offered by a large number of antennas in the elevation. To facilitate the evaluation of these systems, a large effort in 3D channel modeling is needed. This paper aims at providing a summary of the recent 3GPP activity around 3D channel modeling. The 3GPP proposed approach to model antenna radiation pattern is compared with the ITU approach. A closed-form expression is then worked out for the spatial correlation function (SCF) for channels constituted by individual antenna elements in the array by exploiting results on spherical harmonics and Legendre polynomials. The proposed expression can be used to obtain correlation coefficients for any arbitrary 3D propagation environment. Simulation results corroborate and study the derived spatial correlation expression. The results are directly applicable to the analysis of future 5G 3D massive MIMO systems.
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