Opens in a new tab

AES E-Library

← Back to search

Journal Article

Auralization of Finite-Element and Boundary Element Vibroacoustic Models With Wave Field Synthesis

Authors: Proulx, François; Berry, Alain; Gauthier, Philippe-Aubert

Journal of the Audio Engineering Society · Volume 73 · Issue 7/8 · pp. 446–460 · July 2025

Abstract

Wave field synthesis (WFS) is a spatial audio method that allows for auralization over an extended listening space and for a multi-listener experience. WFS is generally only suitable for simple compact sources and canonical extended virtual sources. It is not yet fully adapted to auralize complex radiating objects modeled via numerical methods, such as the finite element method (FEM) and the boundary element method (BEM). The authors propose an auralization workflow combining either FEM or BEM with WFS, for both coupled (vibroacoustic) and uncoupled (vibration) problems. General expressions are provided for loudspeaker driving functions using classical FEM and BEM outputs. The workflow is tested experimentally on a vibrating plate and a vibrating half-cylinder using a 24-loudspeaker WFS system. Both the frequency response and spatial directivity of these complex radiators are well reproduced. However, unwanted reflections from the listening room are visible in the later part of reproduced impulse responses. Although the methodology has inherent limitations that eventually need to be addressed in future work, it is believed that the proposed workflow is a step toward auralization approaches for complex sources and opens opportunities for engineers in terms of acoustic design and decision making.

Details

Publication
Journal of the Audio Engineering Society
Volume
73
Issue
7/8
Pages
446–460
Publication date
July 7, 2025
Affiliation
Centre de recherche acoustique-signal-humain, Département de génie mécanique, Université de Sherbrooke, Sherbrooke, Quebec, Canada; Centre de recherche acoustique-signal-humain, Département de génie mécanique, Université de Sherbrooke, Sherbrooke, Quebec, Canada; Centre for Interdisciplinary Research in Music Media and Technology (CIRMMT), Montreal, Quebec, Canada; Centre for Interdisciplinary Research in Music Media and Technology (CIRMMT), Montreal, Quebec, Canada; Centre for Interdisciplinary Research in Music Media and Technology (CIRMMT), Montreal, Quebec, Canada; École des arts visuels et médiatiques, Université du Québec à Montréal, Montreal, Quebec, Canada (See document for exact affiliation information.)
Type
Journal Article