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Speaker localization using direct path dominance test based on sound field directivity

机译:基于声场方向性的直接路径优势测试对说话人进行定位

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Estimation of the direction-of-arrival (DoA) of a speaker in a room is important in many audio signal processing applications. Environments with reverberation that masks the DoA information are particularly challenging. Recently, a DoA estimation method that is robust to reverberation has been developed. This method identifies time-frequency bins dominated by the contribution from the direct path, which carries the correct DoA information. However, its implementation is computationally demanding as it requires frequency smoothing to overcome the effect of coherent early reflections and matrix decomposition to apply the direct-path dominance (DPD) test. In this work, a novel computationally-efficient alternative to the DPD test is proposed, based on the directivity measure for sensor arrays, which requires neither frequency smoothing nor matrix decomposition, and which has been reformulated for sound field directivity with spherical microphone arrays. The paper presents the proposed method and a comparison to previous methods under a range of reverberation and noise conditions. Result demonstrate that the proposed method shows comparable performance to the original method in terms of robustness to reverberation and noise, and is about four times more computationally efficient for the given experiment
机译:在许多音频信号处理应用中,估算房间中扬声器的到达方向(DoA)很重要。混响掩盖了DoA信息的环境尤其具有挑战性。最近,已经开发了对混响鲁棒的DoA估计方法。该方法识别时频点,该时频点由直接路径的贡献控制,该路径携带正确的DoA信息。但是,由于需要频率平滑来克服相干早期反射和矩阵分解以应用直接路径优势(DPD)测试的影响,因此其实现在计算上要求很高。在这项工作中,基于传感器阵列的方向性度量,提出了一种新颖的计算有效的替代DPD测试的方法,该方法既不需要频率平滑也不需要矩阵分解,并且已经针对球形麦克风阵列重新设计了声场方向性。本文介绍了所提出的方法,并在一定范围的混响和噪声条件下与以前的方法进行了比较。结果表明,该方法在混响和噪声的鲁棒性方面表现出与原始方法相当的性能,并且在给定实验中的计算效率约为其四倍。

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