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Block Sparse Recovery for Wideband Channel Estimation in Hybrid mmWave MIMO Systems

机译:混合MMWAVE MIMO系统中的宽带信道估计阻止稀疏恢复

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Channel state information (CSI) is essential to achieve the optimal configuration of hybrid precoders and combiners in millimeter wave (mmWave) communication system. Exploiting the sparsity of mmWave channel enables to improve the CSI quality with small training overhead. In this paper, to further reduce the training overhead for channel estimation, the joint sparsity of wideband mmWave channel in angular-delay domain is exploited, where the mmWave channel estimation is formulated as a block sparse recovery problem. Accordingly, the block coherence of equivalent sensing matrix is smaller than the coherence of original sensing matrix, and decreases with the length of channel delay taps in the lower bound. The lower block coherence in turn elevates the recovery probability of unknown sparse channel. Finally, we proposed to employ the block orthogonal matching pursuit to exploit the derived block sparsity of wideband mmWave channel. The simulation results verify the analysis and demonstrate that the proposed block sparse recovery scheme outperforms the existing wideband mmWave channel estimators in terms of both the estimation accuracy and required training overhead.
机译:频道状态信息(CSI)对于实现混合式预编码器和毫米波(MMWAVE)通信系统的最佳配置是必不可少的。利用MMWAVE通道的稀疏性,可以通过小训练开销提高CSI质量。在本文中,为了进一步降低信道估计的训练开销,利用角延迟域的宽带MM波通道的关节稀疏性,其中将MM波信道估计作为块稀疏恢复问题制定。因此,等效感测矩阵的块相干性小于原始感测矩阵的相干性,并且随着下界中的信道延迟抽头的长度而减小。较低的块连贯性反过来升高了未知稀疏通道的恢复概率。最后,我们建议采用块正交匹配追求来利用宽带MMWAVE通道的派生块稀疏性。仿真结果验证了分析,并证明所提出的块稀疏恢复方案在估计准确度和所需训练开销方面优于现有的宽带MMWAVE信道估计。

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