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Head-related transfer functions (HRTFs) are used in auditory applications for spatializing virtual sound sources. Listener-specific HRTFs, which aim at mimicking the filtering of the head, torso, and pinnae of a specific listener, improve the perceived quality of virtual sound compared to using non-individualized HRTFs. However, using listener-specific HRTFs may not be accessible for everyone. Here, the authors propose as an alternative to take advantage of the adaptation abilities of human listeners to a new set of HRTFs. They claim that agreeing upon a single listener-independent set of HRTFs has beneficial effects for long-term adaptation compared to using several, potentially severely different HRTFs. Thus, the Non-individual Ear MOdel (NEMO) initiative is a first step toward a standardized listener-independent set of HRTFs to be used across applications as an alternative to individualization. A prototype, NEMObeta, is presented to explicitly encourage external feedback from the spatial audio community and to agree on a complete list of requirements for the future HRTF selection.
Author (s): Lladó, Pedro; Pollack, Katharina; Meyer-Kahlen, Nils
Affiliation:
Acoustics Lab, Department of Information and Communications Engineering, Aalto University, Espoo, Finland; Acoustics Research Institute, Austrian Academy of Sciences, Vienna, Austria
(See document for exact affiliation information.)
Publication Date:
2024-04-06
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Permalink: https://aes2.org/publications/elibrary-page/?id=22389
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Lladó, Pedro; Pollack, Katharina; Meyer-Kahlen, Nils; 2024; Toward a Standard Listener-Independent HRTF to Facilitate Long-Term Adaptation [PDF]; Acoustics Lab, Department of Information and Communications Engineering, Aalto University, Espoo, Finland; Acoustics Research Institute, Austrian Academy of Sciences, Vienna, Austria; Paper ; Available from: https://aes2.org/publications/elibrary-page/?id=22389
Lladó, Pedro; Pollack, Katharina; Meyer-Kahlen, Nils; Toward a Standard Listener-Independent HRTF to Facilitate Long-Term Adaptation [PDF]; Acoustics Lab, Department of Information and Communications Engineering, Aalto University, Espoo, Finland; Acoustics Research Institute, Austrian Academy of Sciences, Vienna, Austria; Paper ; 2024 Available: https://aes2.org/publications/elibrary-page/?id=22389
@article{lladó2024toward,
author={lladó pedro and pollack katharina and meyer-kahlen nils},
journal={journal of the audio engineering society},
title={toward a standard listener-independent hrtf to facilitate long-term adaptation},
year={2024},
volume={72},
issue={4},
pages={188-192},
month={april},}