You are currently logged in as an
Institutional Subscriber.
If you would like to logout,
please click on the button below.
Home / Publications / E-library page
Only AES members and Institutional Journal Subscribers can download
Several well-established approaches to physical modeling synthesis for musical instruments exist. Finite-difference time-domain methods are known for their generality and flexibility in terms of the systems one can model but are less flexible with regard to smooth parameter variations due to their reliance on a static grid. This paper presents the dynamic grid, a method to smoothly change grid configurations of finite-difference time-domain schemes based on sub-audio--rate time variation of parameters. This allows for extensions of the behavior of physical models beyond the physically possible, broadening the range of expressive possibilities for the musician. The method is applied to the 1D wave equation, the stiff string, and 2D systems, including the 2D wave equation and thin plate. Results show that the method does not introduce noticeable artifacts when changing between grid configurations for systems, including loss.
Author (s): Willemsen, Silvin; Bilbao, Stefan; Ducceschi, Michele; Serafin, Stefania
Affiliation:
Multisensory Experience Lab, CREATE, Aalborg University Copenhagen, Denmark; Acoustics and Audio Group, University of Edinburgh, United Kingdom; Department of Industrial Engineering (DIN), University of Bologna, Italy; Multisensory Experience Lab, CREATE, Aalborg University Copenhagen, Denmark
(See document for exact affiliation information.)
Publication Date:
2022-09-06
Import into BibTeX
Permalink: https://aes2.org/publications/elibrary-page/?id=21879
(541KB)
Click to purchase paper as a non-member or login as an AES member. If your company or school subscribes to the E-Library then switch to the institutional version. If you are not an AES member Join the AES. If you need to check your member status, login to the Member Portal.
Willemsen, Silvin; Bilbao, Stefan; Ducceschi, Michele; Serafin, Stefania; 2022; The Dynamic Grid: Time-Varying Parameters for Musical Instrument Simulations Based on Finite-Difference Time-Domain Schemes [PDF]; Multisensory Experience Lab, CREATE, Aalborg University Copenhagen, Denmark; Acoustics and Audio Group, University of Edinburgh, United Kingdom; Department of Industrial Engineering (DIN), University of Bologna, Italy; Multisensory Experience Lab, CREATE, Aalborg University Copenhagen, Denmark; Paper ; Available from: https://aes2.org/publications/elibrary-page/?id=21879
Willemsen, Silvin; Bilbao, Stefan; Ducceschi, Michele; Serafin, Stefania; The Dynamic Grid: Time-Varying Parameters for Musical Instrument Simulations Based on Finite-Difference Time-Domain Schemes [PDF]; Multisensory Experience Lab, CREATE, Aalborg University Copenhagen, Denmark; Acoustics and Audio Group, University of Edinburgh, United Kingdom; Department of Industrial Engineering (DIN), University of Bologna, Italy; Multisensory Experience Lab, CREATE, Aalborg University Copenhagen, Denmark; Paper ; 2022 Available: https://aes2.org/publications/elibrary-page/?id=21879
@article{willemsen2022the,
author={willemsen silvin and bilbao stefan and ducceschi michele and serafin stefania},
journal={journal of the audio engineering society},
title={the dynamic grid: time-varying parameters for musical instrument simulations based on finite-difference time-domain schemes},
year={2022},
volume={70},
issue={9},
pages={650-660},
month={september},}
TY – paper
TI – The Dynamic Grid: Time-Varying Parameters for Musical Instrument Simulations Based on Finite-Difference Time-Domain Schemes
SP – 650 EP – 660
AU – Willemsen, Silvin
AU – Bilbao, Stefan
AU – Ducceschi, Michele
AU – Serafin, Stefania
PY – 2022
JO – Journal of the Audio Engineering Society
VO – 70
IS – 9
Y1 – September 2022