Low-complexity AoA and AoD Estimation in the Transformed Spatial Domain for Millimeter Wave MIMO Channels

Sandra Roger, Carmen Botella-Mascarell, Diego Lloria, M. Cobos, Gábor Fodor
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引用次数: 1

Abstract

High-accuracy angle of arrival (AoA) and angle of departure (AoD) estimation is critical for cell search, stable communications and positioning in millimeter wave (mmWave) cellular systems. Moreover, the design of low-complexity AoA/AoD estimation algorithms is also of major importance in the deployment of practical systems to enable a fast and resource-efficient computation of beamforming weights. Parametric mmWave channel estimation allows to describe the channel matrix as a combination of direction-dependent signal paths, exploiting the sparse characteristics of mmWave channels. In this context, a fast Transformed Spatial Domain Channel Estimation (TSDCE) algorithm was recently proposed to perform parametric channel estimation with low complexity, which in turn results in a full characterization of the transmitting and receiving angles for dominant signal paths. In this paper, we analyze the AoA/AoD estimation capability and accuracy of the TSDCE algorithm in detail. We find that the TSDCE algorithm has a significant performance advantage with respect to the traditional approach, which is based on frequency domain processing, in complexity-constrained environments, especially at high signal-to-noise ratios.
毫米波MIMO信道变换空间域的低复杂度AoA和AoD估计
在毫米波(mmWave)蜂窝系统中,高精度的到达角(AoA)和出发角(AoD)估计对于小区搜索、稳定通信和定位至关重要。此外,设计低复杂度的AoA/AoD估计算法在实际系统的部署中也非常重要,以实现快速和资源高效的波束形成权重计算。参数毫米波信道估计允许将信道矩阵描述为方向相关信号路径的组合,利用毫米波信道的稀疏特性。在此背景下,最近提出了一种快速的变换空间域信道估计(TSDCE)算法,以低复杂度进行参数信道估计,从而可以充分表征主要信号路径的发射和接收角度。本文详细分析了TSDCE算法的AoA/AoD估计能力和精度。我们发现,在复杂性受限的环境中,特别是在高信噪比的情况下,TSDCE算法与基于频域处理的传统方法相比具有显著的性能优势。
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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