4.7 Article

Reconstruction of the sound radiation field from flexural vibration measurements with multiple cameras

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ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.ymssp.2023.110289

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Sound radiation measurement; Vibration measurement; Photogrammetry; Multi-camera; Multi-view

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This paper presents a new approach to reconstruct the sound radiation field produced by the flexural vibration of a distributed structure using video image acquisitions. The study focuses on tonal flexural vibration and sound radiation at specific resonance frequencies. The vibration and radiation fields are estimated using triangulation from images acquired with six cameras, and compared with measurements from a laser vibrometer and an array of microphones.
This paper presents the background theory and the experimental implementation of a new approach for the reconstruction of the sound radiation field produced by the flexural vibration of a distributed structure using video image acquisitions. The study is focused on tonal flexural vibration and sound radiation at the first five resonance frequencies of a baffled flat rectangular plate model-structure. The plate is divided into a regular mesh of rectangular elements whose centres are marked with small bullets. The transverse vibrations at the grid of target points are estimated via triangulation from the images acquired with six cameras unevenly spread along half of a circle located, with a small offset, parallel to the surface of the plate. The sound radiation field in free space is then reconstructed from the Rayleigh integral, which is approximated into a finite sum over the mesh of elements. Both the flexural vibration field and the sound radiation field derived from the cameras video acquisitions are contrasted with measurements taken respectively with a laser vibrometer and an array of microphones.

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