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Examinează metodele selectate una lângă alta; rândurile care diferă sunt evidențiate.

BEM Acoustics×Urmărirea razelor acustice×Mascare psihoacustică×
DomeniuAcusticăAcusticăAcustică
FamilieProcess / pipelineProcess / pipelineProcess / pipeline
Anul apariției197119791961
Autorul originalCarlos Brebbia, Robert ButterfieldJames Allen, David BerkleyEberhard Zwicker
TipComputational simulation for acousticsComputational room acoustics methodPerceptual model for audio systems
Sursa seminalăBurton, A. J., & Miller, G. F. (1971). The application of integral equation methods to the numerical solution of some exterior boundary-value problems. Proceedings of the Royal Society A, 323(1553), 201–210. DOI ↗Allen, J. B., & Berkley, D. A. (1979). Image method for efficiently simulating small-room acoustics. Journal of the Acoustical Society of America, 65(4), 943–950. DOI ↗Zwicker, E., & Scharf, B. (1965). Psychoacoustics: Facts and Models. Springer-Verlag. ISBN: 978-3540631644
Denumiri alternativeBEM, boundary element method, indirect BEM, direct BEMray tracing, geometric acoustics, image source method, sound ray propagationmasking, temporal masking, frequency masking, auditory masking
Înrudite555
RezumatThe Boundary Element Method (BEM) is a numerical technique for solving acoustic wave equations in complex geometries. Unlike finite element methods (FEM) that mesh entire volumes, BEM discretizes only the acoustic boundaries (surfaces), reducing computational cost and memory. First applied to acoustics by Burton and Miller in 1971, BEM is widely used for predicting room acoustics, exterior noise radiation, and acoustic scattering without the need for volumetric meshing.Acoustic ray tracing is a computational technique for predicting sound propagation in rooms by treating acoustic energy as rays that reflect specularly off surfaces. Formalized by Allen and Berkley in 1979 via the image source method, ray tracing is one of the most computationally efficient methods for room acoustic simulation, especially for early and mid-reflections. It is widely used in audio engineering, architectural acoustics, and interactive spatial audio for virtual environments.Psychoacoustic masking describes how the human auditory system suppresses the perception of weak sounds in the presence of stronger sounds. Formalized by Eberhard Zwicker in the 1960s, masking is a fundamental phenomenon in hearing and the basis for perceptual audio coding (MP3, AAC, OPUS). Masking occurs both in frequency (spectral masking) and time (temporal masking), and understanding these effects enables efficient audio compression and realistic sound design.
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ScholarGateCompară metode: BEM Acoustics · Acoustic Ray Tracing · Psychoacoustic Masking. Preluat la 2026-06-20 de pe https://scholargate.app/ro/compare