Taylor-SWFT: fast discrete Statistical Wave Field Theory using Taylor expansion for late reverberation Work under review

Fuente: arXiv
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Main Authors: Rodrigues, Marius, Lalay, Louis, Badeau, Roland, Richard, Gaël, Fontaine, Mathieu
Format: Preprint
Published: 2026
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author Rodrigues, Marius
Lalay, Louis
Badeau, Roland
Richard, Gaël
Fontaine, Mathieu
author_facet Rodrigues, Marius
Lalay, Louis
Badeau, Roland
Richard, Gaël
Fontaine, Mathieu
contents Dynamic room acoustic simulation aims to render the acoustic effects of an environment in real time while accounting for potentially moving sources and receivers. In this context, the efficient synthesis of the long-term room response, also known as late reverberation, remains challenging because of the intricate relationship between room geometry and acoustic behavior. This paper introduces Taylor-SWFT, an efficient implementation of key results from Statistical Wave Field Theory (SWFT) for the geometry-aware dynamic synthesis of late reverberation. The method is evaluated on the Benchmark for Room Acoustical Simulation (BRAS) and achieves competitive performance compared with classical approaches, while substantially reducing computational cost.
format Preprint
id arxiv_https___arxiv_org_abs_2604_21382
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Taylor-SWFT: fast discrete Statistical Wave Field Theory using Taylor expansion for late reverberation Work under review
Rodrigues, Marius
Lalay, Louis
Badeau, Roland
Richard, Gaël
Fontaine, Mathieu
Classical Physics
Dynamic room acoustic simulation aims to render the acoustic effects of an environment in real time while accounting for potentially moving sources and receivers. In this context, the efficient synthesis of the long-term room response, also known as late reverberation, remains challenging because of the intricate relationship between room geometry and acoustic behavior. This paper introduces Taylor-SWFT, an efficient implementation of key results from Statistical Wave Field Theory (SWFT) for the geometry-aware dynamic synthesis of late reverberation. The method is evaluated on the Benchmark for Room Acoustical Simulation (BRAS) and achieves competitive performance compared with classical approaches, while substantially reducing computational cost.
title Taylor-SWFT: fast discrete Statistical Wave Field Theory using Taylor expansion for late reverberation Work under review
topic Classical Physics
url https://arxiv.org/abs/2604.21382