Active design of diffuse acoustic fields in enclosures

Author:

Aquino Wilkins1,Rouse Jerry2,Bonnet Marc3

Affiliation:

1. Department of Mechanical Engineering and Materials Science, Duke University 1 , Durham, North Carolina 27708, USA

2. Analytical Structural Dynamics, Sandia National Laboratories 2 , Albuquerque, New Mexico 87123, USA

3. POEMS 3 (CNRS, Inria, ENSTA Paris), Palaiseau, France

Abstract

This paper presents a numerical framework for designing diffuse fields in rooms of any shape and size, driven at arbitrary frequencies. That is, we aim at overcoming the Schroeder frequency limit for generating diffuse fields in an enclosed space. We formulate the problem as a Tikhonov regularized inverse problem and propose a low-rank approximation of the spatial correlation that results in significant computational gains. Our approximation is applicable to arbitrary sets of target points and allows us to produce an optimal design at a computational cost that grows only linearly with the (potentially large) number of target points. We demonstrate the feasibility of our approach through numerical examples where we approximate diffuse fields at frequencies well below the Schroeder limit.

Funder

Sandia National Laboratories

Publisher

Acoustical Society of America (ASA)

Reference28 articles.

1. Die statistischen Parameter der Frequenzkurven von grossßen Räumen” (“The statistical parameters of the frequency curves of large rooms”);Acustica,1954

2. Statistical parameters of the frequency response curves of large rooms;J. Audio Eng. Soc.,1987

3. Diffusion in reverberation rooms;J. Sound Vibr.,1971

4. Control of an acoustical speaker system in a reverberant chamber,2003

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