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首页> 外文期刊>The Journal of the Acoustical Society of America >A wavenumber approach to quantifying the isotropy of the sound field in reverberant spaces
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A wavenumber approach to quantifying the isotropy of the sound field in reverberant spaces

机译:一种波数方法来量化混响空间中声场各向同性的方法

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摘要

This study proposes an experimental method for evaluating isotropy in enclosures, based on an analysis of the wavenumber spectrum in the spherical harmonics domain. The wavenumber spectrum, which results from expanding an arbitrary sound field into a plane-wave basis, is used to characterize the spatial properties of the observed sound field. Subsequently, the obtained wavenumber spectrum is expanded into a series of spherical harmonics, and the moments from this spherical expansion are used to characterize the isotropy of the wave field. The analytical framework is presented. The method is examined numerically and experimentally, based on array measurements in four chambers: two anechoic chambers (one with a single source and another with an array of 52 sources), a reverberation chamber, and the same reverberation chamber with a sample of absorbing material on the floor. The results indicate that the proposed methodology is suitable for assessing the isotropy of a sound field. (C) 2018 Acoustical Society of America.
机译:本研究提出了一种基于球面谐波结构域的波数谱的分析来评估外壳中各向同性的实验方法。波数谱,其导致从任意声场扩展到平面波的基础,用于表征观察到的声场的空间特性。随后,将获得的波数谱膨胀成一系列球形谐波,并且来自该球形膨胀的瞬间用于表征波场的各向同性。分析框架出现了。基于四个腔室中的阵列测量值:两个空心腔室(具有单个源的单个源,具有52个阵列的另一个),混响室和具有吸收材料样品的混响室(具有相同的混响室)的阵列测量方法在地上。结果表明,所提出的方法适用于评估声场的各向同性。 (c)2018年声学学会。

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