L. Gabrielli, S. Tomassetti, and S. Squartini, “Timbre Equalization of Wind Instruments Physical Models Using a Random Iterative Search Algorithm,” J. Audio Eng. Soc., vol. 68, no. 5, pp. 364–376, May 2020, doi: 10.17743/jaes.2020.0009.
Gabrielli L, Tomassetti S, Squartini S. Timbre Equalization of Wind Instruments Physical Models Using a Random Iterative Search Algorithm. J Audio Eng Soc. 2020;68(5):364-376. doi:10.17743/jaes.2020.0009
@article{Gabrielli2020_20854,
author = {Gabrielli, Leonardo and Tomassetti, Stefano and Squartini, Stefano},
title = {{Timbre Equalization of Wind Instruments Physical Models Using a Random Iterative Search Algorithm}},
journal = {Journal of the Audio Engineering Society},
volume = {68},
number = {5},
pages = {364--376},
year = {2020},
month = may,
publisher = {Audio Engineering Society},
doi = {10.17743/jaes.2020.0009},
url = {https://doi.org/10.17743/jaes.2020.0009}
}
TY - JOUR
TI - Timbre Equalization of Wind Instruments Physical Models Using a Random Iterative Search Algorithm
AU - Gabrielli, Leonardo
AU - Tomassetti, Stefano
AU - Squartini, Stefano
T2 - Journal of the Audio Engineering Society
J2 - J. Audio Eng. Soc.
VL - 68
IS - 5
SP - 364
EP - 376
PY - 2020
DA - 2020/05/06
DO - 10.17743/jaes.2020.0009
UR - https://doi.org/10.17743/jaes.2020.0009
PB - Audio Engineering Society
LA - en
AB - In many sound synthesis applications, once the salient properties of a sound source are defined, equalization is undertaken in order to fit it to the musical context. This is normally done by linear filters.When the sound synthesis algorithm, however, is as flexible as a physical model, Computational Sound Design techniques can be employed to perform offline equalization at the model level, saving real-time computational resources. In this work we extend the use of a recently proposed algorithm, MORIS, to equalize the harmonic content of a synthesized sound obtained by physical modeling according to equalization curves. We evaluate the effectiveness of the approach by considering an open-source clarinet model and pipe organ physical model, comparing our results with those obtained by online filtering and showing the advantages of the new method.
ER -