奇异块Toeplitz矩阵逼近及其在多麦克风语音去噪中的应用

Samir-Mohamad Omar, D. Slock
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引用次数: 7

摘要

研究了单声源下的盲多信道去噪问题。我们之前已经表明[5],单输入多输出(SIMO)混响滤波器可以通过对其输出(在SISO输入预白化之后)应用MIMO线性预测(LP)来盲目均衡。在本文中,我们研究了在噪声环境和/或声通道长度低估下基于lp的去噪。考虑到环境噪声和后期混响作为加性噪声,我们建议引入一个后滤波器,将MIMO预测滤波器转换为一个稍长的均衡器。后置滤波器允许将延迟均衡为非零延迟。对于后滤波器,这里考虑了MMSE- zf和MMSE设计标准。我们还将重点放在计算效率(基于FFT)的块Toeplitz协方差矩阵增强上,该增强在应用MIMO LP之前加强SIMO滤波源和白噪声结构。第二个建议的改进是在SISO和MIMO LP之间进行迭代改进。仿真结果表明,该方案在噪声环境下具有较强的鲁棒性,与传统的延迟&预测均衡器和延迟&和波束形成器相比,具有更好的性能。
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Singular block Toeplitz matrix approximation and application to multi-microphone speech dereverberation
We consider the blind multichannel dereverberation problem for a single source. We have shown before [5] that the single-input multi-output (SIMO) reverberation filter can be equalized blindly by applying MIMO Linear Prediction (LP) to its output (after SISO input pre-whitening). In this paper, we investigate the LP-based dereverberation in a noisy environment, and/or under acoustic channel length underestimation. Considering ambient noise and late reverberation as additive noises, we propose to introduce a postfilter that transforms the MIMO prediction filter into a somewhat longer equalizer. The postfilter allows to equalize to non-zero delay. Both MMSE-ZF and MMSE design criteria are considered here for the postfilter.We also focus here on computationally efficient (FFT based) block Toeplitz covariance matrix enhancement that enforces the SIMO filtered source plus white noise structure before applying MIMO LP. A second suggested refinement is an iterative refinement between SISO and MIMO LP. Simulations show that the proposed scheme is robust in noisy environments, and performs better compared to the classic Delay-&-Predict equalizer and the Delay-&-Sum beamformer.
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