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首页> 外文期刊>The Journal of the Acoustical Society of America >Sound field reconstruction using a spherical microphone array
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Sound field reconstruction using a spherical microphone array

机译:使用球形麦克风阵列进行声场重建

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摘要

A method is presented that makes it possible to reconstruct an arbitrary sound field based on measurements with a spherical microphone array. The proposed method (spherical equivalent source method) makes use of a point source expansion to describe the sound field on the rigid spherical array, from which it is possible to reconstruct the sound field over a three-dimensional domain, inferring all acoustic quantities: sound pressure, particle velocity, and sound intensity. The problem is formulated using a Neumann Green's function that accounts for the presence of the rigid sphere in the medium. One can reconstruct the total sound field, or only the incident part, i.e., the scattering introduced by the sphere can be removed, making the array virtually transparent. The method makes it possible to use sequential measurements: different measurement positions can be combined, providing an extended measurement area consisting of an array of spheres, and the sound field at any point of the source-free domain can be estimated, not being restricted to spherical surfaces. Because it is formulated as an elementary wave model, it allows for diverse solution strategies (least squares, l(1)-norm minimization, etc.), revealing an interesting perspective for further work. (c) 2016 Acoustical Society of America.
机译:提出了一种方法,其使得可以基于具有球形麦克风阵列的测量来重建任意声场。所提出的方法(球面等效源方法)利用点源扩展来描述刚性球形阵列上的声场,从中可以通过三维域重建声场,推断所有声量:声音压力,粒子速度和声强度。使用Neumann Green的功能制定了该问题,该功能占介质中的刚性球体的存在。可以重建总声场,或者只有事件部分,即,可以去除球体引入的散射,使阵列几乎是透明的。该方法使得可以使用顺序测量:可以组合不同的测量位置,提供由球形阵列组成的扩展测量区域,并且可以估计无源域的任何点处的声场,而不是限于球面表面。因为它被配制为基本波模型,它允许各种解决方案策略(最小二乘,L(1) - 夜间最小化等),揭示了进一步的工作的有趣的视角。 (c)2016年声学学会。

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