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Experimental validation of sound field control with a circular double-layer array of loudspeakers

机译:圆形双层扬声器阵列对声场控制的实验验证

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This paper is concerned with experimental validation of a recently proposed method of controlling sound fields with a circular double-layer array of loudspeakers [Chang and Jacobsen, J. Acoust. Soc. Am. 131(6), 4518-4525 (2012)]. The double-layer of loudspeakers is realized with 20 pairs of closed-box loudspeakers mounted back-to-back. Source strengths are obtained with several solution methods by modeling loudspeakers as a weighted combination of monopoles and dipoles. Sound pressure levels of the controlled sound fields are measured inside and outside the array in an anechoic room, and performance indices are calculated. The experimental results show that a method of combining pure contrast maximization with a pressure matching technique provides only a small error in the listening zone between the desired and the reproduced fields, and at the same time reduces the sound level in the quiet zone as expected in the simulation studies well above the spatial Nyquist frequency except at a few frequencies. It is also shown that errors in the positions of the loudspeakers can be critical to the results at frequencies where the distance between the inner and the outer array is close to half a wavelength.
机译:本文与最近提出的利用圆形双层扬声器阵列控制声场的方法的实验验证有关[Chang and Jacobsen,J. Acoust。 Soc。上午。 131(6),4518-4525(2012)]。双层扬声器是通过20对背对背安装的封闭式扬声器实现的。通过将扬声器建模为单极和偶极的加权组合,可以通过几种解决方法获得源强度。在消声室内,在阵列的内部和外部测量受控声场的声压级,并计算性能指标。实验结果表明,一种将纯对比度最大化与压力匹配技术相结合的方法,在期望场和再现场之间的聆听区中仅提供了一个很小的误差,并且同时降低了安静区的声音水平,这是预期的。除少数几个频率外,该模拟的研究远高于空间奈奎斯特频率。还表明,在内部阵列和外部阵列之间的距离接近一半波长的频率处,扬声器位置的误差对于结果至关重要。

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