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Finite and boundary element analysis are applicable in many situations including loudspeaker cone breakup, radiation, diffraction and source/room interaction. However there is a rapid increase in computational requirement with frequency. HPCN techniques exploit the combined resources of several computers. The current work used 4 PCs. Promising results are shown for a radiation problem and analysing source placement in a room.
Author (s): Macey, Patrick C.;
Wright, Julian R.;
Allsopp, Nicholas K.;
Affiliation:
PAFEC Ltd, Notingam, England ; Celestion International, Maidstone, England ; Parallel Applications Centre, Southampton, England
(See document for exact affiliation information.)
AES Convention: 106
Paper Number:4883
Publication Date:
1999-05-06
Session subject:
Transducers
DOI:
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Macey, Patrick C.; Wright, Julian R.; Allsopp, Nicholas K.; 1999; High Performance Computing Network Techniques for Vibroacoustic Analysis: Audio Applications [PDF]; PAFEC Ltd, Notingam, England ; Celestion International, Maidstone, England ; Parallel Applications Centre, Southampton, England; Paper 4883; Available from: https://aes.org/publications/elibrary-page/?id=8297
Macey, Patrick C.; Wright, Julian R.; Allsopp, Nicholas K.; High Performance Computing Network Techniques for Vibroacoustic Analysis: Audio Applications [PDF]; PAFEC Ltd, Notingam, England ; Celestion International, Maidstone, England ; Parallel Applications Centre, Southampton, England; Paper 4883; 1999 Available: https://aes.org/publications/elibrary-page/?id=8297
@inproceedings{Macey1999high,
title={{High Performance Computing Network Techniques for Vibroacoustic Analysis: Audio Applications}},
author={Macey, Patrick C. and Wright, Julian R. and Allsopp, Nicholas K.},
year={1999},
month={may},
booktitle={Journal of the Audio Engineering Society},
publisher={Paper 4883; AES Convention 106; May 1999},
number={4883},
organization={AES},
}
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