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Fourier Acoustics: Sound Radiation and Nearfield Acoustical Holography

TLDR
The Inverse Problem: Cylindrical NAH. as discussed by the authors The Inverse problem: Planar NAH and the Inverse NP-hardness of planar plane waves.
Abstract
Preface. Fourier Transforms & Special Functions. Plane Waves. The Inverse Problem: Planar NAH. Cylindrical Waves. The Inverse Problem: Cylindrical NAH. Spherical Waves. Spherical NAH. Green Functions & the Helmholtz Integral. Index.

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Proceedings ArticleDOI

Head-Related Transfer Function Interpolation From Spatially Sparse Measurements Using Autoencoder With Source Position Conditioning

TL;DR: A method of head-related transfer function (HRTF) interpolation from sparsely measured HRTFs using an autoencoder with source position conditioning and an aggregation module that reduces the dependence of latent variables on source position for obtaining a source-position-independent representation of each subject.
Journal ArticleDOI

Near-field vibro-acoustic transfer function prediction of small close fit enclosure with multiple rotating components

TL;DR: The VAFT was developed using finite element method (FEM) and compared with the experimental results at specific frequencies and good agreement in the results was found between the numerical and experimental data.
Journal ArticleDOI

Exact solutions to the acoustic source reconstruction problem

TL;DR: In this paper, a stable solution to the inverse source reconstruction problem is obtained by decomposing the unknown boundary velocity into a number of efficiently radiating singular velocity patterns that correspond to the number of degrees of freedom of the radiated field.
Journal ArticleDOI

Auralization of vibroacoustic models in engineering using Wave Field Synthesis: Application to plates and transmission loss

TL;DR: In this paper, the authors investigated the workability and interest of a method to use complete vibroacoustic engineering models for auralization based on 2.5D Wave Field Synthesis (WFS).
Journal ArticleDOI

Spatial correlation of radial Gaussian and uniform spherical volume near-field source distributions

TL;DR: The spatial correlation functions were used to design spatially robust beamformers for compact microphone arrays and lead to improved spatial robustness for the applications of signal enhancement and suppression.
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