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Direction of Arrival Estimation for Reverberant Speech Based on Enhanced Decomposition of the Direct Sound

机译:基于直接声音的增强分解的混响讲话的到达估计方向

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Direction of arrival (DOA) estimation for speech sources is an important task in audio signal processing. This task becomes a challenge in reverberant environments, which are typical to real scenarios. Several methods of DOA estimation for speech sources have been developed recently, in an attempt to overcome the effect of reverberation. One effective approach aims to identify time-frequency bins in the short time Fourier transform domain that are dominated by the direct sound. This approach was shown to be particularly adequate for spherical arrays, with processing in the spherical harmonics domain. The direct-path dominance (DPD) test, and a method which is based on the directivity of the sound field are recent examples. While these methods seem to perform well, high reverberation conditions may degrade their performance. In this paper, the structure of the spatial correlation matrix is comprehensively studied, showing that under some well-defined conditions, the DOA of the direct sound can be correctly extracted from its dominant eigenvector, even when contaminated by reflections. This new insight leads to the development of a new test, performing an enhanced decomposition of the direct sound (EDS), denoted the DPD-EDS test. The proposed test is compared to previous DPD tests, and to other recently proposed reverberation-robust methods, using computer simulations and an experimental study, demonstrating its potential advantage. The studies include multiple speakers in highly reverberant environments, therefore representing challenging real-life acoustics scenes.
机译:抵达方向(DOA)语音源的估计是音频信号处理中的重要任务。此任务成为混响环境中的挑战,这是典型的真实方案。最近已经开发了几种关于语音来源的DOA估计方法,以克服混响的影响。一种有效的方法旨在识别由直接声音主导的短时间傅里叶变换域中的时频箱。该方法被示出为球形阵列特别适用于球形谐波结构域。直接路径优势(DPD)测试,以及基于声场方向性的方法是最近的示例。虽然这些方法似乎表现良好,但高音的条件可能会降低它们的性能。在本文中,综合研究了空间相关矩阵的结构,表明在一些明确的条件下,即使被反射污染,也可以从其主导的特征向量正确提取直接声音的DOA。这种新的Insight导致开发新测试,执行直接声音(EDS)的增强分解,表示DPD-EDS测试。将所提出的测试与先前的DPD测试进行比较,并使用计算机模拟和实验研究的最近提出的混响 - 鲁棒方法,证明其潜在的优势。研究包括多个扬声器在高音的环境中,因此代表具有挑战性的现实物理学场景。

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