Y. Li, J. Cardenuto, F. Di Giusto, S. Preihs, and J. Peissig, “A near-field Head-Related Transfer Function data set of KEMAR with high distance resolution and multiple elevations,” in Proc. AES Convention 154, May 2023, Paper 72. [Online]. Available: https://aes.org/publications/elibrary-page/?id=22097
Li Y, Cardenuto J, Di Giusto F, Preihs S, Peissig J. A near-field Head-Related Transfer Function data set of KEMAR with high distance resolution and multiple elevations. In: AES Convention 154. Audio Engineering Society; 2023. Paper 72. Available from: https://aes.org/publications/elibrary-page/?id=22097
@inproceedings{Li2023_22097,
author = {Li, Yuqing and Cardenuto, Joao and Di Giusto, Fabio and Preihs, Stephan and Peissig, Jürgen},
title = {{A near-field Head-Related Transfer Function data set of KEMAR with high distance resolution and multiple elevations}},
booktitle = {AES Convention 154},
note = {Paper 72},
year = {2023},
month = may,
publisher = {Audio Engineering Society},
url = {https://aes.org/publications/elibrary-page/?id=22097}
}
TY - CPAPER
TI - A near-field Head-Related Transfer Function data set of KEMAR with high distance resolution and multiple elevations
AU - Li, Yuqing
AU - Cardenuto, Joao
AU - Di Giusto, Fabio
AU - Preihs, Stephan
AU - Peissig, Jürgen
T2 - AES Convention 154
M1 - Paper 72
PY - 2023
DA - 2023/05/06
UR - https://aes.org/publications/elibrary-page/?id=22097
PB - Audio Engineering Society
LA - en
AB - A near-field Head-Related Transfer Function (HRTF) data set measured on a KEMAR head and torso simulator with high distance resolution and multiple elevations is presented. The measurement used a continuously moving sound source and adaptive filtering, allowing efficient acquisition of near-field HRTFs. HRTFs were measured at 83448 spatial points in a range of distances from 0.2 m to 1.1 m, elevations from -25°to 35°, and azimuths from 0°to 355°. Notably, the distance resolution of the HRTF data set is 1 cm, higher than that of all existing public near-field HRTF databases. The reliability of the presented data set was confirmed by objective assessment. The data set enables extensive exploration of distance-dependent variation in near-field HRTFs and is beneficial for applications of binaural rendering of nearby sound sources.
ER -