Exploiting spatial sparsity for estimating channels of hybrid MIMO systems in millimeter wave communications

Junho Lee, Gye-Tae Gil, Y. H. Lee
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引用次数: 150

Abstract

Hybrid multiple input multiple output (MIMO) systems consist of an analog beamformer with large antenna arrays followed by a digital MIMO processor. Channel estimation for hybrid MIMO systems in millimeter wave (mm-wave) communications is challenging because of the large antenna array and the low signal-to-noise ratio (SNR) before beamforming. In this paper, we propose an open-loop channel estimator for mm-wave hybrid MIMO systems exploiting the sparse nature of mm-wave channels. A sparse signal recovery problem is formulated for channel estimation and solved by the orthogonal matching pursuit (OMP) based methods. A modification of the OMP algorithm, called the multi-grid (MG) OMP, is proposed. It is shown that the MG-OMP can significantly reduce the computational load of the OMP method. A process for designing the training beams is also developed. Specifically, given the analog training beams the baseband processor for beam training is designed. Simulation results demonstrate the advantage of the OMP based methods over the conventional least squares (LS) method and the efficiency of the MG-OMP over the original OMP.
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利用空间稀疏性估计毫米波通信中混合MIMO系统的信道
混合多输入多输出(MIMO)系统由一个大型天线阵列的模拟波束形成器和一个数字MIMO处理器组成。在毫米波(mm-wave)通信中,由于天线阵列较大,波束形成前的信噪比较低,混合MIMO系统的信道估计具有挑战性。本文利用毫米波信道的稀疏特性,提出了一种用于毫米波混合MIMO系统的开环信道估计器。提出了信道估计的稀疏信号恢复问题,并采用基于正交匹配追踪(OMP)的方法进行了求解。提出了一种改进的OMP算法,称为多网格(MG) OMP。结果表明,MG-OMP可以显著降低OMP方法的计算量。本文还提出了训练梁的设计方法。具体来说,针对模拟训练波束,设计了用于波束训练的基带处理器。仿真结果表明,基于最小二乘的最小二乘方法优于传统的最小二乘方法,MG-OMP优于原始的最小二乘方法。
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