Skip to search boxSkip to navigationSkip to main content

Three-dimensional directivity measurement of acoustic diffusers using regularized holography and sound field separation

  • Eric Brandão
    ,
  • Efren Fernandez-Grande
    ,
  • ,
  • Samuel A. Verburg
    ,
  • Antoine Richard
Research Output:
Journal Article or Conference Article in Journal
Journal article
Peer-review

Open access

Publication Information

Output type

Research Output:
Journal Article or Conference Article in Journal
Journal article
Peer-review

Original language

English

Pages from-to (Number of pages)

Pages 3936–3948 (14 pages)

Journal (Volume, Issue Number)

The Journal of the Acoustical Society of America (Volume 158, Issue 5)

Publication milestones

  • Published - 18/11/2025

Publication status

Published - 18/11/2025

Publication IDs

  • ORCID: /0009-0004-2709-6492/work/197555688
  • Scopus: 105022220185

Abstract

Characterizing acoustic diffusers poses significant challenges due to the complex space-time dependence of the scattered sound fields they generate. This study proposes using regularized plane wave expansion to measure real-sized rigid diffusers in free-field. The formulated inverse problem enables the separation of incident and scattered sound fields in the wave-number domain. Furthermore, a tailored wave-number grid facilitates the computation of three-dimensional directivities directly identified in the wave-number spectrum. The proposed technique is validated through measurements conducted in the near field of three diffusers with distinct geometries. The results obtained from regularized plane wave expansion were compared against reference simulations using the Boundary Element Method. The unique directivity characteristics of different diffusers are accurately characterized, and good agreement is found with the reference simulations. The use of finer spatial resolution and
-octave band averaging further improves the reliability of directivity and diffusion coefficient estimates. Thus, the method provides an alternative path for a robust and more practical characterization of acoustic diffusers.

Publication metrics

PlumX, opens in new tab

Captures
2
Citations
3

Funding Details

This work was supported by the National Research Council of Brazil (CNPq—Conselho Nacional de Desenvolvimento Científico e Tecnológico) (Grant No. 402633/2021-0).
FundersFunding numbers
National Research Council of Brazil
402633/2021-0