Fast diffraction pathfinding for dynamic sound propagation

Author:

Schissler Carl1,Mückl Gregor1,Calamia Paul1

Affiliation:

1. Facebook Reality Labs Research

Abstract

In the context of geometric acoustic simulation, one of the more perceptually important yet difficult to simulate acoustic effects is diffraction, a phenomenon that allows sound to propagate around obstructions and corners. A significant bottleneck in real-time simulation of diffraction is the enumeration of high-order diffraction propagation paths in scenes with complex geometry (e.g. highly tessellated surfaces). To this end, we present a dynamic geometric diffraction approach that consists of an extensive mesh preprocessing pipeline and complementary runtime algorithm. The preprocessing module identifies a small subset of edges that are important for diffraction using a novel silhouette edge detection heuristic. It also extends these edges with planar diffraction geometry and precomputes a graph data structure encoding the visibility between the edges. The runtime module uses bidirectional path tracing against the diffraction geometry to probabilistically explore potential paths between sources and listeners, then evaluates the intensities for these paths using the Uniform Theory of Diffraction. It uses the edge visibility graph and the A* pathfinding algorithm to robustly and efficiently find additional high-order diffraction paths. We demonstrate how this technique can simulate 10th-order diffraction up to 568 times faster than the previous state of the art, and can efficiently handle large scenes with both high geometric complexity and high numbers of sources.

Publisher

Association for Computing Machinery (ACM)

Subject

Computer Graphics and Computer-Aided Design

Cited by 9 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Auditory Occlusion Based on the Human Body in the Direct Sound Path: Measured and Perceivable Effects;Audio Mostly 2024 - Explorations in Sonic Cultures;2024-09-18

2. A Free-Space Diffraction BSDF;ACM Transactions on Graphics;2024-07-19

3. Effects of measured and simulated diffraction from a plate on sound source localization;The Journal of the Acoustical Society of America;2024-05-01

4. An Architecture and Implementation of Real-Time Sound Propagation Hardware for Mobile Devices;SIGGRAPH Asia 2023 Conference Papers;2023-12-10

5. Efficient Diffraction Modeling Using Neural Networks and Infinite Impulse Response Filters;Journal of the Audio Engineering Society;2023-09-12

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