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Multichannel Bin-Wise Robust Frequency-Domain Adaptive Filtering and Its Application to Adaptive Beamforming

机译:多通道Bin-Wise鲁棒频域自适应滤波及其在自适应波束形成中的应用

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Least-squares error (LSE) or mean-squared error (MSE) optimization criteria lead to adaptive filters that are highly sensitive to impulsive noise. The sensitivity to noise bursts increases with the convergence speed of the adaptation algorithm and limits the performance of signal processing algorithms, especially when fast convergence is required, as for example, in adaptive beamforming for speech and audio signal acquisition or acoustic echo cancellation. In these applications, noise bursts are frequently due to undetected double-talk. In this paper, we present impulsive noise robust multichannel frequency-domain adaptive filters (MC-FDAFs) based on outlier-robust M-estimation using a Newton algorithm and a discrete Newton algorithm, which are especially designed for frequency bin-wise adaptation control. Bin-wise adaptation and control in the frequency-domain enables the application of the outlier-robust MC-FDAFs to a generalized sidelobe canceler (GSC) using an adaptive blocking matrix for speech and audio signal acquisition. It is shown that the improved robustness leads to faster convergence and to higher interference suppression relative to nonrobust adaptation algorithms, especially during periods of strong interference
机译:最小二乘误差(LSE)或均方误差(MSE)优化标准导致自适应滤波器对脉冲噪声高度敏感。对噪声突发的敏感度随自适应算法的收敛速度而增加,并限制了信号处理算法的性能,特别是在需要快速收敛时,例如,在用于语音和音频信号采集或声回声消除的自适应波束形成中。在这些应用中,噪声突发通常是由于未检测到的双向通话引起的。在本文中,我们提出了一种基于牛顿算法和离散牛顿算法的异常鲁棒M估计的脉冲噪声鲁棒多通道频域自适应滤波器(MC-FDAF),这些滤波器是专为频率二进制自适应控制而设计的。频域中的二进制自适应控制可将异常鲁棒的MC-FDAF应用到自适应旁通消除器(GSC)的通用旁瓣消除器(GSC)上,用于语音和音频信号采集。结果表明,相对于非鲁棒自适应算法,改进的鲁棒性导致更快的收敛和更高的干扰抑制,尤其是在强干扰期间

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