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Near-Field Acoustic Source Localization and Beamforming in Spherical Harmonics Domain

机译:球谐域中的近场声源定位与波束形成

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In this paper, we address the issue of near-field source localization using spherical microphone array. The spherical array has been widely used for far-field source localization due to ease of array processing in spherical harmonics domain. Various methods for far-field source localization has been reformulated in spherical harmonics domain. However, near-field source localization that involves joint estimation of range and bearing of the sources has hitherto not been investigated. In this paper, the near-field data model is developed in spherical harmonics domain. In particular, three methods that jointly estimate the range and bearing of multiple sources in the spherical array framework are proposed. Two subspace-based methods called the Spherical Harmonic MUltiple SIgnal Classification (SH-MUSIC) and the Spherical Harmonics MUSIC-Group Delay (SH-MGD) for near-field source localization are first presented. In addition, a method for near-field source localization and beamforming using Spherical Harmonic MVDR (SH-MVDR) is also formulated. Formulation and analysis of Cramér–Rao bound for near-field sources is presented in spherical harmonics domain. Various source localization experiments were conducted on simulated and signal acquired over spherical microphone array in an anechoic chamber. Root-mean-square error and probability of resolution are utilized as measures to evaluate the proposed methods. The significance and practical application of the proposed methods is discussed using experiment on interference suppression. The near-field SH-MVDR beamforming is utilized in this context.
机译:在本文中,我们解决了使用球形麦克风阵列进行近场源定位的问题。球形阵列由于易于在球形谐波域中进行阵列处理而被广泛用于远场源定位。在球谐域中已重新制定了各种用于远场源定位的方法。然而,迄今为止尚未研究涉及对距离和方位的联合估计的近场源定位。本文在球谐域内建立了近场数据模型。特别地,提出了三种方法来共同估计球面阵列框架中多个源的范围和方位。首先介绍了两种基于子空间的方法,即近场源定位的球形谐波多信号分类(SH-MUSIC)和球形谐波MUSIC组延迟(SH-MGD)。此外,还制定了一种使用球形谐波MVDR(SH-MVDR)进行近场源定位和波束形成的方法。在球谐域中提出了近场源Cramér–Rao界的公式和分析。在无回声室中的球形麦克风阵列上模拟并采集了信号,进行了各种源定位实验。均方根误差和解决概率被用作评估所提出方法的措施。通过干扰抑制实验探讨了所提方法的意义和实际应用。在这种情况下,使用了近场SH-MVDR波束成形。

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