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It is challenging to characterize sound across space, especially in small enclosed volumes, using conventional microphone arrays.
This study explores acousto-optic sensing methods to record the sound field throughout an enclosure, including regions close to a source and boundaries.
The method uses a laser vibrometer to sense modulations of the refractive index in air, caused by the propagating sound pressure waves.
Compared to microphone arrays, the sound field can be measured non-invasively and at high resolution which is particularly attractive at high frequencies, in enclosures of limited size or unfavorable mounting conditions for fixtures.
We compensate for vibrations that contaminate and conceal the acousto-optic measurements and employ an image source model to also reconstruct early parts of the impulse response.
The results demonstrate that acousto-optic measurements can enable the analysis of sound field in enclosed spaces non-invasively and with high resolution.
Author (s): Hahmann, Manuel; Balmes, Chloé; Fuentes, Esteban; Verburg, Samuel
Affiliation:
Dynaudio A/S; Dynaudio A/S; Dynaudio A/S; Technical University of Denmark
(See document for exact affiliation information.)
AES Convention: 158
Paper Number:10228
Publication Date:
2025-05-12
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Permalink: https://aes2.org/publications/elibrary-page/?id=22910
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Hahmann, Manuel; Balmes, Chloé; Fuentes, Esteban; Verburg, Samuel; 2025; Non-invasive sound field sensing in enclosures using acousto-optics [PDF]; Dynaudio A/S; Dynaudio A/S; Dynaudio A/S; Technical University of Denmark; Paper 10228; Available from: https://aes2.org/publications/elibrary-page/?id=22910
Hahmann, Manuel; Balmes, Chloé; Fuentes, Esteban; Verburg, Samuel; Non-invasive sound field sensing in enclosures using acousto-optics [PDF]; Dynaudio A/S; Dynaudio A/S; Dynaudio A/S; Technical University of Denmark; Paper 10228; 2025 Available: https://aes2.org/publications/elibrary-page/?id=22910
@article{hahmann2025non-invasive,
author={hahmann manuel and balmes chloé and fuentes esteban and verburg samuel},
journal={journal of the audio engineering society},
title={non-invasive sound field sensing in enclosures using acousto-optics},
year={2025},
number={10228},
month={june},}