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Akusztikus holográfia×Akusztikus sugárkövetés×Gerendafókuszálás×Impedancia-cső×
TudományterületAkusztikaAkusztikaAkusztikaAkusztika
MódszercsaládProcess / pipelineProcess / pipelineProcess / pipelineProcess / pipeline
Keletkezés éve1985197919881866
MegalkotóJames Maynard, Earl Williams, Yongjian LeeJames Allen, David BerkleyVan Veen, Barry BuckleyAugust Kundt
TípusSound field reconstruction methodComputational room acoustics methodDirectional audio array processingAcoustic absorption measurement
AlapműMaynard, J. D., Williams, E. G., & Lee, Y. (1985). Near-field acoustic holography: I. Theory of generalized holography and the development of NAH. Journal of the Acoustical Society of America, 78(4), 1395–1413. link ↗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 ↗Van Veen, B. D., & Buckley, K. M. (1988). Beamforming: A versatile approach to spatial filtering. IEEE ASSP Magazine, 5(2), 4–24. DOI ↗ASTM E1050-19 (2019). Standard Test Method for Impedance and Absorption of Acoustical Materials Using a Tube, Two Microphone and a Digital Frequency Analysis System. American Society for Testing and Materials. link ↗
Alternatív nevekNAH, near-field acoustics, sound field mapping, acoustic imagingray tracing, geometric acoustics, image source method, sound ray propagationbeamformer, spatial filtering, microphone array, phased arraykundt tube, resonance tube, acoustic absorption, sound absorption coefficient
Kapcsolódó5555
ÖsszefoglalóNear-Field Acoustic Holography (NAH) is a technique for reconstructing 3D acoustic sound fields and visualizing sound radiation from sources by measuring pressure at a dense microphone array in the near field. Pioneered by Maynard, Williams, and Lee in 1985, NAH extends holographic principles from optics to acoustics, enabling detailed acoustic source characterization, noise source identification, and acoustic field visualization that is impossible with conventional single-point or line-array methods.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.Beamforming is a spatial signal processing technique that uses microphone arrays to selectively enhance sound from a desired direction while suppressing sounds from other directions. Formalized by Van Veen and Buckley in 1988, beamforming is fundamental to hands-free speech communication, hearing aids, sonar, radar, and spatial audio recording. It enables 'listening' with directional sensitivity despite using omnidirectional microphones, by exploiting time delays and phase differences between array elements.An impedance tube (or Kundt tube) is a laboratory apparatus for measuring the acoustic absorption coefficient and surface impedance of materials. Originally developed by August Kundt in 1866, the technique has been standardized by ASTM and ISO for characterizing noise-control and acoustic-treatment materials. The impedance tube method is simple, portable, and cost-effective, making it the industry standard for pre-design acoustic material selection and quality control.
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ScholarGateMódszerek összehasonlítása: Acoustic Holography · Acoustic Ray Tracing · Beamforming · Impedance Tube. Letöltve 2026-06-20, forrás: https://scholargate.app/hu/compare