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Evaluation of Sound Absorption Characteristics of Material with Multichannel Sound Field Reproduction System

机译:用多通道声场再现系统评估材料的吸音特性

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Multi-channel sound field reproduction system is utilized as a measurement system of absorption characteristics of acoustical material. The used system named "Sound Cask" has ninety-six channel evenly distributed loudspeakers in around 8 m~3 enclosure and works with boundary surface control principle that reproduce any sound field by replicating the pressure distribution at the surface of arbitrary enclosed region. The reproduced field in Sound Cask is around 0.4 m diameter sphere inside the Cask. The random incidence condition is aimed in this study. Uncorrelated noises that are processed with inverse filter matrix are used as measurement signal. This condition is thus equivalent that the acoustical material is exposed to uncorrelated noises coming from various directions without undesired effect of the enclosure. First, the degree of isotropy in the reproduced field is measured by the index called UAD, uniformity of arrival directions, that evaluates the uniformity of directions of sound intensities. The results indicate the superiority of proposed method with inverse filter compared with conventional reverberation chamber especially at low frequency. The absorption coefficients of small sized fiber glass (e.g., 0.3 × 0.3 m~2) are then measured by in-situ two microphones method. The results show reasonable values compared with typical coefficients obtained by conventional measurement method. These indicate effectiveness and possibility of proposed method. Additionally, the proposed method can reproduce any desired conditions of sound incidence to the material such as oblique and simultaneous incidence from plural directions. Stable measurement with such specialized conditions would be expected with proposed method.
机译:多通道声场再现系统用作声学材料的吸收特性的测量系统。使用的二手系统名为“Sound Cask”,具有九十六个通道均匀分布在大约8 M〜3外壳中,并使用边界表面控制原理,通过复制任意封闭区域的表面上的压力分布来重现任何声场的边界表面控制原理。声音桶中的再现场在桶内的60米直径范围内。随机发生率条件旨在本研究。用逆滤波矩阵处理的不相关的噪声用作测量信号。因此,该条件等同于声学材料暴露于来自各个方向的不相关的噪声,而不会对外壳的不期望的影响。首先,通过称为UAD的指数来测量再现字段中的各向同性程度,到达方向均匀,评估声强度方向的均匀性。结果表明,与常规混响室的逆滤波器的优势与常规混响室尤其处于低频。然后通过原位两种麦克风法测量小尺寸纤维玻璃(例如,0.3×0.3M〜2)的吸收系数。结果显示了与通过传统测量方法获得的典型系数相比的合理值。这些表明提出方法的有效性和可能性。另外,所提出的方法可以将任何所需的声音入射条件与多个方向的倾斜和同时发射的材料再现为诸如倾斜和同时发射的材料。预期采用这种专用条件的稳定测量将通过提出的方法预期。

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