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An equalization model is presented that seeks optimal solutions to wide area low-frequency sound reproduction in closed acoustic spaces. The methodology improves upon conventional wisdom by incorporating a generalized subwoofer array where individual frequency dependent loudspeaker polar responses are described by complex spherical harmonic frequency dependent functions. Multi-point system identification is performed using 3-dimensional finite-difference time-domain simulation with optimization applied to seek global equalization represented by a set of orthogonal transfer functions applied to each spherical harmonic of each subwoofer within the array. The system is evaluated within a 3-dimensional virtual acoustic space using both time and frequency domain metrics.
Author (s): Hill, Adam J.;
Hawksford, Malcolm O.;
Affiliation:
University of Essex, Colchester, UK
(See document for exact affiliation information.)
AES Convention: 128
Paper Number:8074
Publication Date:
2010-05-06
Session subject:
Loudspeakers and Headphones
DOI:
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Hill, Adam J.; Hawksford, Malcolm O.; 2010; Chameleon Subwoofer Arrays—Generalized Theory of Vectored Sources in a Closed Acoustic Space [PDF]; University of Essex, Colchester, UK; Paper 8074; Available from: https://aes.org/publications/elibrary-page/?id=15371
Hill, Adam J.; Hawksford, Malcolm O.; Chameleon Subwoofer Arrays—Generalized Theory of Vectored Sources in a Closed Acoustic Space [PDF]; University of Essex, Colchester, UK; Paper 8074; 2010 Available: https://aes.org/publications/elibrary-page/?id=15371
@inproceedings{Hill2010chameleon,
title={{Chameleon Subwoofer Arrays—Generalized Theory of Vectored Sources in a Closed Acoustic Space}},
author={Hill, Adam J. and Hawksford, Malcolm O.},
year={2010},
month={may},
booktitle={Journal of the Audio Engineering Society},
publisher={Paper 8074; AES Convention 128; May 2010},
number={8074},
organization={AES},
}
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