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首页> 外文期刊>The Journal of the Acoustical Society of America >Low frequency sound spatial encoding within an enclosure using spherical microphone arrays
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Low frequency sound spatial encoding within an enclosure using spherical microphone arrays

机译:使用球形麦克风阵列在外壳内进行低频声音空间编码

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摘要

In a spherical coordinate system, interior sound field can be expressed in terms of a series of Fourier-Bessel expansions. The process that obtains the expansion coefficients by use of a microphone array (e.g., a spherical microphone array) is called spatial encoding. Until now spatial encoding has mainly been examined in a free field or a diffuse field which can be modeled as a sum of plane waves. For spatial encoding within an enclosure at low frequencies, special challenges would be encountered in two aspects. First, the expansions are influenced by array configurations. Second, an acoustic mode based model instead of a plane wave based one should be considered. This study focuses on these challenges. Different kinds of array configurations were compared specifically at low frequencies, and the spatial encoding for the cylindrical cavity modes was investigated. It was found that the spherical array with cardioid microphones was optimal when kr < 1, the cavity modes can be effectively represented by only a sparse subset of expansion coefficients and a good reproduction can be achieved even outside the spherical valid region, which demonstrates an effective alternative way to describe the cylindrical cavity modes and can be implemented efficiently in practice. (C) 2016 Acoustical Society of America.
机译:在球坐标系中,内部声场可以用一系列傅立叶-贝塞尔展开式表示。通过使用麦克风阵列(例如,球形麦克风阵列)获得扩展系数的过程称为空间编码。迄今为止,主要在自由场或漫射场中研究了空间编码,可以将其建模为平面波之和。对于低频下的外壳内的空间编码,将在两个方面遇到特殊的挑战。首先,扩展受阵列配置的影响。其次,应该考虑基于声学模式的模型,而不是基于平面波的模型。这项研究着眼于这些挑战。特别是在低频下比较了不同种类的阵列配置,并研究了圆柱腔模式的空间编码。研究发现,当kr <1时,带有心形麦克风的球形阵列是最佳的,仅通过稀疏的扩展系数子集就可以有效地表示腔模,即使在球形有效区域之外也可以实现良好的再现,这证明了有效描述圆柱腔模式的另一种方法,可以在实践中有效实施。 (C)2016年美国声学学会。

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