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首页> 外文期刊>IEEE transactions on audio, speech and language processing >Joint Dereverberation and Residual Echo Suppression of Speech Signals in Noisy Environments
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Joint Dereverberation and Residual Echo Suppression of Speech Signals in Noisy Environments

机译:嘈杂环境中语音信号的联合混响和残留回声抑制

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Hands-free devices are often used in a noisy and reverberant environment. Therefore, the received microphone signal does not only contain the desired near-end speech signal but also interferences such as room reverberation that is caused by the near-end source, background noise and a far-end echo signal that results from the acoustic coupling between the loudspeaker and the microphone. These interferences degrade the fidelity and intelligibility of near-end speech. In the last two decades, post filters have been developed that can be used in conjunction with a single microphone acoustic echo canceller to enhance the near-end speech. In previous works, spectral enhancement techniques have been used to suppress residual echo and background noise for single microphone acoustic echo cancellers. However, dereverberation of the near-end speech was not addressed in this context. Recently, practically feasible spectral enhancement techniques to suppress reverberation have emerged. In this paper, we derive a novel spectral variance estimator for the late reverberation of the near-end speech. Residual echo will be present at the output of the acoustic echo canceller when the acoustic echo path cannot be completely modeled by the adaptive filter. A spectral variance estimator for the so-called late residual echo that results from the deficient length of the adaptive filter is derived. Both estimators are based on a statistical reverberation model. The model parameters depend on the reverberation time of the room, which can be obtained using the estimated acoustic echo path. A novel postfilter is developed which suppresses late reverberation of the near-end speech, residual echo and background noise, and maintains a constant residual background noise level. Experimental results demonstrate the beneficial use of the developed system for reducing reverberation, residual echo, and background noise.
机译:免提设备通常在嘈杂和混响的环境中使用。因此,接收到的麦克风信号不仅包含所需的近端语音信号,而且还包含干扰,例如由近端源引起的房间混响,背景噪声以及由之间的声耦合导致的远端回声信号扬声器和麦克风。这些干扰会降低近端语音的保真度和清晰度。在过去的二十年中,已经开发了后置滤波器,可以将其与单个麦克风声学回声消除器结合使用,以增强近端语音。在以前的工作中,频谱增强技术已被用于抑制单个麦克风声学回声消除器的残留回声和背景噪声。然而,在这种情况下未解决近端语音的混响。最近,出现了抑制混响的实用可行的频谱增强技术。在本文中,我们为近端语音的后期混响推导了一种新颖的频谱方差估计器。当自适应滤波器无法完全模拟声回波路径时,残余回声将出现在声回波消除器的输出端。推导了由于自适应滤波器长度不足而导致的所谓的后期残留回波的频谱方差估计器。两种估计器均基于统计混响模型。模型参数取决于房间的混响时间,可以使用估计的声学回声路径获得该时间。开发了一种新颖的后置滤波器,它可以抑制近端语音的后期混响,残留回声和背景噪声,并保持恒定的残留背景噪声水平。实验结果表明,开发的系统可有效减少混响,残留回声和背景噪声。

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