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Article detail · 2008

Time Domain Simulation of Directive Sources in 3 D Digital Waveguide Mesh Based Acoustical Models

Journal

IEEE Transactions on Audio, Speech, and Language Processing

ISSN 1558-7916

The ISSN points to another catalog journal; the name is from the YÖKSİS record.

YÖKSİS OpenAlex Open access · green SJR Q1 JCR Q1 Citations 17 Percentile 63.2% FWCI 0.43
Year
2008
Type
article

Data source split

  • YÖKSİS YÖKSİS article record
  • YÖKSİS venue IEEE Transactions on Audio, Speech, and Language Processing
  • Catalog match (ISSN) IEEE Transactions on Audio, Speech and Language Processing
  • OpenAlex OpenAlex enrichment (abstract, citations, topics)

Abstract

English (OpenAlex)

Digital waveguide mesh (DWM) models offer a simple, accurate, time-domain, numerical solution of the wave equation. A specific case where such accurate and computationally simple solutions are needed is the acoustical modeling of open or closed volumes. It is possible to model 3-D propagation of waves in enclosures such as rooms using DWM models. Generally, idealized omnidirectional sources are used for obtaining the impulse response in the DWM. However, real-life sound sources are never completely isotropic, causing wavefronts with directional properties. This paper presents two methods to simulate analytical and empirical directivities in 3-D DWM models in the far-field. The first method is based on the direct excitation of the mesh with the velocity component of the directional source and is used to simulate analytical sources. The second method is based on the weighting of velocity components generated by an omnidirectional source at different octave-bands and is used to simulate sources with frequency-dependent empirical directivity functions. A simple interpolation method for obtaining a closed-form description of the directivity function from incomplete directivity data is also proposed. Simulation results are presented for two sources in an acoustical model of a rectangular room.

Topics

  • Hearing Loss and Rehabilitation
  • Acoustic Wave Phenomena Research
  • Music and Audio Processing

Primary topic Hearing Loss and Rehabilitation

Authors

  1. HÜSEYİN HACIHABİBOĞLU
  2. BANU GÜNEL KILIÇ ORTA DOĞU TEKNİK ÜNİVERSİTESİ
  3. Kondoz Ahmet