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Fast Block LMS Based Estimation of Angularly Sparse Channels for Single-Carrier Wideband Millimeter Wave Hybrid MIMO Systems

机译:基于快速块LMS估计单载波宽带毫米波混合MIMO系统的角度稀疏信道

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摘要

Adaptive block-based least-mean squares (BLMS)-based techniques are conceived for channel estimation in single-carrier (SC) wideband millimeter wave (mmWave) hybrid MIMO systems. In this context, a frequency-domain channel estimation model is developed for SC wideband systems, followed by a novel fast BLMS (FBLMS) technique, which has a significantly lower computational complexity than the existing channel estimation schemes designed for mmWave hybrid MIMO systems. The proposed FBLMS technique is also robust, since it does not require any second-order statistical information, such as the cross-covariance vector and covariance matrix. Next a beamspace domain representation of the mmWave MIMO channel is obtained, followed by the development of the sparse-FBLMS (SFBLMS) scheme for the estimation of the wideband mmWave MIMO channel that additionally exploits the angular-sparsity for improved channel estimation performance. Analytical expressions are derived for the mean squared estimation error (MSEE) and mean squared observation error (MSOE) of both the proposed FBLMS and SFBLMS techniques. Furthermore, a systematic procedure is developed for determining the beneficial range of the values of the regularization parameter, which ensures a high channel estimation accuracy of the SFBLMS over FBLMS. A hybrid precoder and combiner design is also proposed for SC wideband systems by employing the channel estimates obtained using the above techniques. Simulation results are presented to illustrate the performance of the proposed BLMS-based schemes in comparison to the existing schemes, which closely match the theoretical results derived.
机译:基于自适应块的最小平均正方形(BLMS)基于单载波(SC)宽带毫米波(MMWAVE)混合MIMO系统的信道估计。在这种情况下,为SC宽带系统开发频域信道估计模型,其次是一种新的快速BLMS(FBLMS)技术,其具有比为MMWAVE混合MIMO系统设计的现有信道估计方案的计算复杂性显着较低。所提出的FBLMS技术也是坚固的,因为它不需要任何二阶统计信息,例如交叉协方差矢量和协方差矩阵。接下来,获得MMWAVE MIMO信道的波束域表示,然后开发用于估计宽带MMWVE MIMO信道的稀疏FBLMS(SFBLMS)方案,该宽带MMWOVE MIMO信道用于改进的信道估计性能的角度稀浮性。推导出用于所提出的FBLM和SFBLMS技术的平均平方估计误差(MSE)和均值平方观察误差(MSOE)的分析表达式。此外,开发了一种用于确定正则化参数值的有益范围的系统程序,这确保了FBLMS上的SFBLMS的高通道估计精度。通过采用使用上述技术获得的信道估计,还提出了一种混合预编码器和组合器设计。提出了仿真结果以说明与现有方案相比,该方案的性能与现有方案相比,这与衍生的理论结果密切相关。

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