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Frequency-domain single-channel inverse filtering for speech dereverberation: Theory and practice

机译:语音去混响的频域单通道逆滤波:理论与实践

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The objective of single-channel inverse filtering is to design an inverse filter that achieves dereverberation while being robust to an inaccurate room impulse response (RIR) measurement or estimate. Since a stable and causal inverse filter typically does not exist, approximate time-domain inverse filtering techniques such as singlechannel least-squares (SCLS) have been proposed. However, besides being computationally expensive and often infeasible, SCLS generally leads to distortions in the output signal in the presence of RIR inaccuracies. In this paper, a theoretical analysis is initially provided, showing that the direct inversion of the acoustic transfer function in the frequency-domain generally yields instability and acausality issues. In order to resolve these issues, a novel frequency-domain inverse filtering technique is proposed that incorporates regularization and uses a single-channel speech enhancement scheme. Experimental results demonstrate that the proposed technique yields a higher dereverberation performance and has a significantly lower computational complexity compared to the SCLS technique.
机译:单通道逆滤波的目的是设计一种逆混响器,该混响器可实现去混响,同时对不准确的室内脉冲响应(RIR)测量或估计具有鲁棒性。由于通常不存在稳定的因果逆滤波器,因此提出了近似时域逆滤波技术,例如单通道最小二乘(SCLS)。但是,除了在计算上昂贵并且通常不可行之外,在存在RIR不准确的情况下,SCLS通常会导致输出信号失真。本文首先提供了理论分析,表明在频域中声学传递函数的直接反演通常会产生不稳定性和非因果关系问题。为了解决这些问题,提出了一种新颖的频域逆滤波技术,该技术结合了正则化并使用单通道语音增强方案。实验结果表明,与SCLS技术相比,所提出的技术具有更高的去混响性能,并且计算复杂度大大降低。

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