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In-situ measurement of sound absorbing properties using plane-wave sound field reproduced by virtual loudspeaker array

机译:使用虚拟扬声器阵列再现的平面波声场原位测量吸声性能

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摘要

A new method of measuring the acoustic properties of sound absorbing material in situ under reproduced plane wave sound field is proposed. This method employs a single loudspeaker to synthesize a virtual array of loudspeakers which reproduce the plane wave sound field in front of the material surface, and applies the standard transfer function method to measure acoustic impedance and absorption coefficient. Simulation shows that this method can accurately measure absorption coefficient in the frequency range of 100-1.6 k Hz. This method is also applied to measure the absorption coefficient and acoustic impedance of two test samples in a semi-anechoic chamber, and compared with two other existing in-situ measurement methods. The proposed method demonstrates higher accuracy in measuring both acoustic impedance and absorption coefficient for the strongly-absorbing material sample in the frequency range of 175-1.6 k Hz and for the weakly-absorbing material sample in the frequency range of 250-1.6 k Hz. Experimental results and theoretical analysis also show that insufficient signal-to-noise ratio and unwanted reflected waves contribute to the insufficient accuracy of this method below 175 Hz. (C) 2015 Elsevier Ltd. All rights reserved.
机译:提出了一种在再现的平面波声场下原位测量吸声材料声学特性的新方法。该方法采用单个扬声器来合成扬声器的虚拟阵列,该虚拟阵列将在材料表面的前面重现平面波声场,并应用标准传递函数方法来测量声阻抗和吸收系数。仿真表明,该方法可以准确测量100-1.6 k Hz频率范围内的吸收系数。该方法还用于测量半消声室中两个测试样品的吸收系数和声阻抗,并与其他两种现有的原位测量方法进行比较。对于频率为175-1.6 k Hz的强吸收材料样品和频率为250-1.6 k Hz的弱吸收材料样品,所提出的方法在测量声阻抗和吸收系数方面均显示出更高的精度。实验结果和理论分析也表明,信噪比不足和不想要的反射波会导致该方法在175 Hz以下的精度不足。 (C)2015 Elsevier Ltd.保留所有权利。

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