Characterization of acoustic materials at arbitrary incidence angle using sound field synthesis

Author:

Dupont SamuelORCID,Sanalatii Maryna,Melon ManuelORCID,Robin OlivierORCID,Berry AlainORCID,Le Roux Jean-ChristopheORCID

Abstract

Standardized methods for measuring sound absorption such as the impedance tube and reverberation chamber methods are limited to normal or diffuse incidence, respectively. Two research axes have been generally followed in the literature to develop alternative techniques, the first one focusing on the measurement part, that is from the two-microphone technique to the use of microphone arrays or pressure-velocity sensors. The second axis focuses on the excitation part with for instance the use of sound field synthesis techniques. Since acoustic impedance and sound absorption coefficient of materials are classically defined under normal and oblique plane wave excitation, synthesizing an “ideal” plane wave using a loudspeaker array would allow measuring these acoustics quantities using a simple microphone pair. In this article, the effect of the different parameters of a loudspeaker array on acoustic plane waves reproduction on a material’s surface is first numerically studied. Then, numerical and experimental results for the estimation of both impedance and absorption coefficients are reported. These results show that sound field synthesis allows to characterize a material for arbitrary incidence angles over a wide frequency range, thus offering an alternative method to standard techniques and an improvement over existing works.

Publisher

EDP Sciences

Subject

Electrical and Electronic Engineering,Speech and Hearing,Computer Science Applications,Acoustics and Ultrasonics

Reference28 articles.

1. ASTM E150–12: Standard test method for impedance and absorption of acoustical materials using a tube, two microphones and a digital frequency analysis system. American Society for Testing Material International, 2012.

2. ISO 10534–2: Acoustics – Determination of sound absorption coefficient and impedance in impedance tubes – Part 2: Transfer-function method. International Organization for Standardization, 1998.

3. ISO 354: Acoustics – Measurement of sound absorption in a reverberation room. International Organization for Standardization, 2003.

4. ASTM C423–09a: Standard test method for sound absorption and sound absorption coefficients by the reverberation room method. American Society for Testing Material International, 2009.

5. Vercammen M.: Improving the accuracy of sound absorption measurement according to ISO 354, in Proceedings of the International Symposium on Room Acoustics, Melbourne, Australia, 2010.

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