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Analysis of the average performance of the multi-channel Wiener filter for distributed microphone arrays using statistical room acoustics

机译:使用统计室内声学分析分布式麦克风阵列的多通道维纳滤波器的平均性能

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For most multi-microphone noise reduction algorithms, e.g. the multi-channel Wiener filter (MWF), it is well known that the performance depends on the acoustic scenario at hand, i.e. the used microphone array, the position of the desired source and the noise field. Since the position of the desired source is not always known a priori, it is of great interest in many applications to be able to compute the average performance for a specific microphone array, which can be obtained by averaging the performance over all feasible source positions. A possible but either time-consuming or computationally complex approach to achieve this is to use measurements or simulations for a large number of source positions. In this paper, we propose to use the statistical properties of the acoustical transfer functions (ATFs) between the desired source and the microphones to derive analytical expressions for the spatially averaged performance measures (output SNR, noise reduction, speech distortion) of the MWF, assuming a homogeneous and known noise field. In addition, we show that although the spatially averaged performance measures do not express the performance of the MWF for a given position of the source and/or the microphones, they can be used to derive approximate analytical expressions for the average performance of the MWF for a given position of the microphones. Experimental results show that the proposed analytical expressions can be used to easily compare the performance of different microphone arrays, e.g. in an acoustic sensor network, without having to measure or numerically simulate a large number of ATFs.
机译:对于大多数多麦克风降噪算法,例如作为多通道维纳滤波器(MWF),众所周知,性能取决于手头的声学情况,即所使用的麦克风阵列,所需源的位置和噪声场。由于并非总是先验地知道所需声源的位置,因此在许多应用中,能够计算出特定麦克风阵列的平均性能非常重要,这可以通过对所有可行声源位置上的性能求平均来获得。实现此目标的一种可能但既费时又复杂的方法是对大量源位置使用测量或模拟。在本文中,我们建议使用所需信号源和麦克风之间的声学​​传递函数(ATF)的统计属性来推导MWF的空间平均性能指标(输出SNR,降噪,语音失真)的解析表达式,假设有一个均匀且已知的噪声场。此外,我们表明,尽管空间平均性能指标不能表示源和/或麦克风给定位置的MWF的性能,但它们可用于得出MWF的平均性能的近似分析表达式。麦克风的给定位置。实验结果表明,所提出的解析表达式可用于轻松比较不同麦克风阵列(例如,麦克风阵列)的性能。在声学传感器网络中,无需测量或数值模拟大量的ATF。

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