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
In multi-room environments, modelling the sound propagation is complex due to the coupling of rooms and diverse source-receiver positions. A common scenario is when the source and the receiver are in different rooms without a clear line of sight. For such source-receiver configurations, an initial increase in energy is observed, referred to as the fade-in of reverberation. Based on recent work of representing inhomogeneous and anisotropic reverberation with common decay times, this work proposes an extended parametric model that enables the modelling of the fade-in phenomenon. The method performs fitting on the envelopes, instead of energy decay functions, and allows negative amplitudes of decaying exponentials. We evaluate the method on simulated and measured multi-room environments, where we show that the proposed approach can now model the fade-ins that were unrealisable with the previous method.
Author (s): Lee, Kyung Yun; Meyer-Kahlen, Nils; Götz, Georg; Svensson, Ulf Peter; Schlecht, Sebastian J.; Välimäki, Vesa
Affiliation:
Acoustics Lab, Dpt. of Information and Communications Engineering, Aalto University, Finland; Acoustics Lab, Dpt. of Information and Communications Engineering, Aalto University, Finland; Acoustics Lab, Dpt. of Information and Communications Engineering, Aalto University, Finland; Dpt. of Electronic Systems, Norwegian University of Science and Technology, Norway; Friedrich-Alexander-Universität Erlangen-Nürnberg (FAU), Germany; Acoustics Lab, Dpt. of Information and Communications Engineering, Aalto University, Finland
(See document for exact affiliation information.)
Publication Date:
2024-08-05
Import into BibTeX
Session subject:
Audio for Virtual and Augmented Reality
Permalink: https://aes2.org/publications/elibrary-page/?id=22651
(1066KB)
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.
Lee, Kyung Yun; Meyer-Kahlen, Nils; Götz, Georg; Svensson, Ulf Peter; Schlecht, Sebastian J.; Välimäki, Vesa; 2024; Fade-in Reverberation in Multi-room Environments Using the Common-Slope Model [PDF]; Acoustics Lab, Dpt. of Information and Communications Engineering, Aalto University, Finland; Acoustics Lab, Dpt. of Information and Communications Engineering, Aalto University, Finland; Acoustics Lab, Dpt. of Information and Communications Engineering, Aalto University, Finland; Dpt. of Electronic Systems, Norwegian University of Science and Technology, Norway; Friedrich-Alexander-Universität Erlangen-Nürnberg (FAU), Germany; Acoustics Lab, Dpt. of Information and Communications Engineering, Aalto University, Finland; Paper 2; Available from: https://aes2.org/publications/elibrary-page/?id=22651
Lee, Kyung Yun; Meyer-Kahlen, Nils; Götz, Georg; Svensson, Ulf Peter; Schlecht, Sebastian J.; Välimäki, Vesa; Fade-in Reverberation in Multi-room Environments Using the Common-Slope Model [PDF]; Acoustics Lab, Dpt. of Information and Communications Engineering, Aalto University, Finland; Acoustics Lab, Dpt. of Information and Communications Engineering, Aalto University, Finland; Acoustics Lab, Dpt. of Information and Communications Engineering, Aalto University, Finland; Dpt. of Electronic Systems, Norwegian University of Science and Technology, Norway; Friedrich-Alexander-Universität Erlangen-Nürnberg (FAU), Germany; Acoustics Lab, Dpt. of Information and Communications Engineering, Aalto University, Finland; Paper 2; 2024 Available: https://aes2.org/publications/elibrary-page/?id=22651
@article{lee2024fade-in,
author={lee kyung yun and meyer-kahlen nils and götz georg and svensson ulf peter and schlecht sebastian j. and välimäki vesa},
journal={journal of the audio engineering society},
title={fade-in reverberation in multi-room environments using the common-slope model},
year={2024},
number={2},
month={july},}
TY – paper
TI – Fade-in Reverberation in Multi-room Environments Using the Common-Slope Model
AU – Lee, Kyung Yun
AU – Meyer-Kahlen, Nils
AU – Götz, Georg
AU – Svensson, Ulf Peter
AU – Schlecht, Sebastian J.
AU – Välimäki, Vesa
PY – 2024
JO – Journal of the Audio Engineering Society
VL – 2
Y1 – July 2024