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Acoustic centering of sources measured by surrounding spherical microphone arrays

机译:通过周围的球形麦克风阵列测量的声源的声音居中

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摘要

The radiation patterns of acoustic sources have great significance in a wide range of applications, such as measuring the directivity of loudspeakers and investigating the radiation of musical instruments for auralization. Recently, surrounding spherical microphone arrays have been studied for sound field analysis, facilitating measurement of the pressure around a sphere and the computation of the spherical harmonics spectrum of the sound source. However, the sound radiation pattern may be affected by the location of the source inside the microphone array, which is an undesirable property when aiming to characterize source radiation in a unique manner. This paper presents a theoretical analysis of the spherical harmonics spectrum of spatially translated sources and defines four measures for the misalignment of the acoustic center of a radiating source. Optimization is used to promote optimal alignment based on the proposed measures and the errors caused by numerical and array-order limitations are investigated. This methodology is examined using both simulated and experimental data in order to investigate the performance and limitations of the different alignment methods.
机译:声源的辐射方向图在广泛的应用中具有重要意义,例如测量扬声器的方向性和研究用于听觉化的乐器的辐射。最近,已经研究了周围的球形麦克风阵列以进行声场分析,从而有助于测量球体周围的压力以及计算声源的球形谐波频谱。但是,声辐射图可能会受到声源在麦克风阵列内部的位置的影响,这在以独特的方式表征声源辐射时是不希望的。本文介绍了空间转换声源的球谐频谱的理论分析,并定义了四种测量辐射源声中心未对准的措施。基于所提出的措施,使用优化来促进最佳对齐,并研究了由数值和数组顺序限制引起的误差。为了研究不同比对方法的性能和局限性,使用了模拟和实验数据对这种方法进行了检查。

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