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A New Post-filter Algorithm Combined with Two-step Adaptive Beamformer

机译:结合两步自适应波束形成器的新后​​置滤波算法

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The optimal microphone array, in the sense of minimum mean square errors (MMSE), includes two processing blocks: the minimum variance distortionless response (MVDR) beamformer and the single-channel Wiener filter, which acts as post-filter. In this paper, we propose a new post-filter algorithm based on assumptions that both the noise power attenuation factor (NPAF) and signal power attenuation factor (SPAF) are time invariant in the reverberant room. The algorithm recursively estimates both factors from available measurements and uses them in estimation of the post-filter parameters. Additionally, to overcome the problem of the poor performance of the MVDR beamformer in reverberant conditions, we propose the usage of the two-step (TS) MVDR algorithm. This algorithm improves the robustness of the beamformer and its ability to suppress the interferences using an estimate of the desired speaker transfer function. Although TS MVDR beamformer and proposed post-filter can work separately, or combined with other algorithms, the best performance is obtained when they work together. The performance of the proposed combination of new post-filter algorithm and TS MVDR beamformer is tested in a simulated reverberant room and compared with similar algorithms, which gave rather good results.
机译:就最小均方误差(MMSE)而言,最佳麦克风阵列包括两个处理模块:最小方差无失真响应(MVDR)波束形成器和充当后置滤波器的单通道Wiener滤波器。在本文中,我们基于混响室内噪声功率衰减因子(NPAF)和信号功率衰减因子(SPAF)均为时不变的假设,提出了一种新的后置滤波算法。该算法从可用测量值中递归估计两个因子,并将它们用于估计后置滤波器参数。另外,为了克服在混响条件下MVDR波束形成器性能较差的问题,我们提出了两步(TS)MVDR算法的用法。该算法提高了波束形成器的鲁棒性,并通过使用所需扬声器传递函数的估计来抑制干扰。尽管TS MVDR波束形成器和建议的后置滤波器可以单独工作,也可以与其他算法结合使用,但是当它们一起工作时,可以获得最佳性能。在模拟混响室中测试了新后置滤波器算法和TS MVDR波束形成器组合的提议性能,并与类似算法进行了比较,结果相当不错。

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