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Robust and rapid converging adaptive beamforming via a subspace method for the signal-plus-interferences covariance matrix estimation

机译:通过子空间方法进行鲁棒快速收敛的自适应波束形成,用于信号加干扰协方差矩阵估计

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摘要

The presence of the desired signal (DS) in the training snapshots makes the adaptive beamformer sensitive to any steering vector mismatch and dramatically reduces the convergence rate. Even the performance of the most of the existing robust adaptive beamformers is degraded when the signal-to-noise ratio (SNR) is increased. In this study, a high converging rate robust adaptive beamformer is proposed. This method is a promoted eigenspace-based beamformer. In this paper, a new signal-plus-interferences (SPI) covariance matrix estimator is proposed. The subspace of the ideal SPI covariance matrices is exploited and the estimated covariance matrix is projected into this subspace. This projection effectively reduces the covariance matrix estimation error and the proposed estimator yields a more accurate estimation of the SPI covariance matrix. In addition, a computationally efficient steering vector estimator has been proposed. To prevent the absence of the DS steering vector in the estimated SPI subspace, the estimated SPI covariance matrix is compensated. Hence, the proposed method can attain the optimal beamformer in the both high and low SNR cases. The numerical examples indicate that this method has excellent signal-to-interference plus noise ratio performance and offers a higher converging rate compared with the existing robust adaptive beamforming algorithms.
机译:训练快照中期望信号(DS)的存在使自适应波束形成器对任何转向矢量失配敏感,并大大降低了收敛速度。当增加信噪比(SNR)时,即使是大多数现有的鲁棒自适应波束形成器的性能也会下降。在这项研究中,提出了一种高收敛速率的鲁棒自适应波束形成器。此方法是一种改进的基于本征空间的波束形成器。本文提出了一种新的信号加干扰(SPI)协方差矩阵估计器。利用理想SPI协方差矩阵的子空间,并将估计的协方差矩阵投影到该子空间中。该投影有效地减小了协方差矩阵估计误差,并且所提出的估计器对SPI协方差矩阵产生了更准确的估计。另外,已经提出了计算上有效的转向矢量估计器。为了防止在估计的SPI子空间中缺少DS控制向量,对估计的SPI协方差矩阵进行补偿。因此,所提出的方法可以在高信噪比和低信噪比的情况下获得最佳的波束形成器。数值算例表明,与现有的鲁棒自适应波束形成算法相比,该方法具有出色的信噪比和噪声比性能,并提供更高的收敛速度。

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  • 来源
    《Signal Processing, IET》 |2014年第5期|507-520|共14页
  • 作者

    Rahmani M.; Bastani M.H.;

  • 作者单位

    Department of Electrical Engineering, Sharif University of Technology, Iran|c|;

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  • 正文语种 eng
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