首页> 外文会议>European Signal Processing Conference(EUSIPCO 2005); 20050904-08; Antalya(TK) >ACOUSTIC FEEDBACK CANCELLATION FOR LONG ACOUSTIC PATHS USING A NONSTATIONARY SOURCE MODEL
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ACOUSTIC FEEDBACK CANCELLATION FOR LONG ACOUSTIC PATHS USING A NONSTATIONARY SOURCE MODEL

机译:使用非平稳源模型的长声路径的声反馈取消

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摘要

Several pro-active acoustic feedback (Larsen-effect) cancellation schemes have been presented for speech applications with short acoustic feedback paths as encountered in hearing aids, but these schemes fail with the long impulse responses inherent to public address systems. We derive a new prediction error method (PEM) based scheme (referred to as PEM-AFROW) which identifies both the acoustic feedback path and the nonstationary speech source model. A cascade of a short- and a long term predictor removes the coloring and periodicity in voiced speech segments, which account for the unwanted correlation between the loudspeaker signal and the speech source signal. The predictors calculate row operations which are applied to pre-whiten a least squares system, which is then solved recursively by means of e.g. NLMS or RLS algorithms. Simulations show that this approach is indeed superior to earlier approaches whenever long acoustic channels are dealt with.
机译:已经针对助听器中遇到的具有短声反馈路径的语音应用提出了几种主动声反馈(拉森效应)消除方案,但是这些方案由于公共广播系统固有的长冲激响应而失败。我们推导了一种基于新的预测误差方法(PEM)的方案(称为PEM-AFROW),该方案可以识别声反馈路径和非平稳语音源模型。短期和长期预测变量的级联消除了有声语音段中的着色和周期性,这说明了扬声器信号和语音源信号之间的有害相关性。预测器计算行操作,该行操作应用于预增白最小二乘系统,然后通过例如NLMS或RLS算法。仿真表明,只要处理了长的声学通道,此方法确实优于早期方法。

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