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ARRANGEMENTS OF A PAIR OF LOUDSPEAKERS FOR SOUND FIELD CONTROL WITH DOUBLE-LAYER ARRAYS

机译:一对用于双层阵列声场控制的扬声器的布置

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摘要

Recent studies have attempted to control sound fields, and also to reduce room reflections with a circular or spherical array of loudspeakers. One of the attempts was to suppress sound waves propagating to the walls outside the array with a circular double-layer array of loudspeakers. The double-layer array represents a set of a monopole and a dipole in the Kirchhoff-Helmholtz integral equation, and thus the distance between these layers should be short compared with the wavelength. In practice, however, this condition is occasionally hard to satisfy because of the sizes of loudspeaker cabinets. In order to solve this problem, this study aims to examine several arrangements of a pair of loudspeakers that has a short distance between the acoustic centres. The effect of diffraction of sound waves due to the enclosure of another loudspeaker is investigated in simulations in terms of the position of the acoustic centre. As a result, it is shown that a loudspeaker has an approximately omni-directional radiation pattern at low frequencies in spite of the other loudspeaker cabinet, but the acoustic centre is shifted to the opposite direction of the cabinets.
机译:最近的研究尝试控制声场,并使用圆形或球形扬声器阵列减少房间反射。一种尝试是用圆形双层扬声器阵列抑制传播到阵列外部壁上的声波。双层阵列表示在Kirchhoff-Helmholtz积分方程中的一组单极子和偶极子,因此与波长相比,这些层之间的距离应更短。然而,实际上,由于扬声器箱的尺寸,这种情况有时很难满足。为了解决这个问题,本研究旨在研究在音响中心之间具有短距离的一对扬声器的几种布置。根据声学中心的位置,在模拟中研究了由于另一个扬声器的封闭而引起的声波衍射的影响。结果表明,尽管有另一个扬声器箱,但扬声器在低频处仍具有近似全向的辐射方向图,但声中心却移向了扬声器箱的相反方向。

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