Beamspace MU-MIMO for high-density gigabit small cell access at millimeter-wave frequencies

J. Brady, A. Sayeed
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引用次数: 56

Abstract

Through orders-of-magnitude larger bandwidths and small wavelengths that enable high-dimensional multiple-input multiple-output (MIMO) operation, millimeter-wave (mm-wave) systems operating from 30-300 GHz provide a unique opportunity for meeting the exploding capacity demands on wireless networks. Previously, the performance of multiuser MIMO (MU-MIMO) precoders that exploit the concept of beamspace MIMO (B-MIMO) communication - multiplexing data onto orthogonal spatial beams - was explored for access points (APs) equipped with n-dimensional uniform linear arrays (ULAs). It was shown that APs using reduced complexity B-MIMO transceivers achieve near-optimal performance with complexity that tracks the number of mobile stations (MSs). In this paper we explore the application of the reduced complexity B-MIMO transceivers to APs equipped with uniform planar arrays (UPAs) serving small cells. First, we apply B-MIMO theory to develop a framework for analyzing the small cell in terms of the orthogonal beam footprints. We then examine the effect of several parameters on the system performance and demonstrate that the low-complexity transceivers enable 1000s of Gigabit/s aggregate rates in mm-wave small cells serving hundreds of MSs.
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波束空间MU-MIMO用于毫米波频率下的高密度千兆小蜂窝接入
通过数量级更大的带宽和更小的波长,实现高维多输入多输出(MIMO)操作,在30-300 GHz范围内工作的毫米波(mm-wave)系统为满足无线网络爆炸容量需求提供了独特的机会。此前,针对配备n维均匀线性阵列(ula)的接入点(ap),研究了利用波束空间MIMO (B-MIMO)通信概念(将数据多路复用到正交空间波束)的多用户MIMO (MU-MIMO)预编码器的性能。结果表明,使用降低复杂度的B-MIMO收发器的ap在跟踪移动站(MSs)数量的复杂度下实现了近乎最佳的性能。在本文中,我们探讨了降低复杂度的B-MIMO收发器在配备统一平面阵列(upa)的小型小区ap中的应用。首先,我们应用B-MIMO理论开发了一个框架,用于分析正交波束足迹的小蜂窝。然后,我们检查了几个参数对系统性能的影响,并证明了低复杂性收发器在服务数百MSs的毫米波小型小区中实现了1000千兆位/秒的聚合速率。
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