J. Leppänen, A. Politis, M.-V. Laitinen, L. Pajunen, and A. Eronen, “6DoF Rendering of Multi-Point Ambisonics Recordings at Listening Positions Exterior to the Area Defined by Microphone Positions,” in Proc. AES 2024 International Conference on Audio for Virtual and Augmented Reality, Aug. 2024, Paper 13. [Online]. Available: https://aes.org/publications/elibrary-page/?id=22662
Leppänen J, Politis A, Laitinen MV, Pajunen L, Eronen A. 6DoF Rendering of Multi-Point Ambisonics Recordings at Listening Positions Exterior to the Area Defined by Microphone Positions. In: AES 2024 International Conference on Audio for Virtual and Augmented Reality. Audio Engineering Society; 2024. Paper 13. Available from: https://aes.org/publications/elibrary-page/?id=22662
@inproceedings{Leppanen2024_22662,
author = {Leppänen, Jussi and Politis, Archontis and Laitinen, Mikko-Ville and Pajunen, Lauros and Eronen, Antti},
title = {{6DoF Rendering of Multi-Point Ambisonics Recordings at Listening Positions Exterior to the Area Defined by Microphone Positions}},
booktitle = {AES 2024 International Conference on Audio for Virtual and Augmented Reality},
note = {Paper 13},
year = {2024},
month = aug,
publisher = {Audio Engineering Society},
url = {https://aes.org/publications/elibrary-page/?id=22662}
}
TY - CPAPER
TI - 6DoF Rendering of Multi-Point Ambisonics Recordings at Listening Positions Exterior to the Area Defined by Microphone Positions
AU - Leppänen, Jussi
AU - Politis, Archontis
AU - Laitinen, Mikko-Ville
AU - Pajunen, Lauros
AU - Eronen, Antti
T2 - AES 2024 International Conference on Audio for Virtual and Augmented Reality
M1 - Paper 13
PY - 2024
DA - 2024/08/05
UR - https://aes.org/publications/elibrary-page/?id=22662
PB - Audio Engineering Society
LA - en
AB - This work presents a method for 6DoF binaural rendering from multi-point first- or higher-order Ambisonic (FOA/HOA) recordings for the case when the listener is outside of the area covered by the microphones. This work builds on top of a previously presented method for 6DoF binaural rendering when the listener is inside the area covered by the microphones [1]. The method measures spatial parameters in the time-frequency domain that summarize the scene at the microphone positions. It then estimates the same parameters at the listener position through spatial interpolation of the measured ones. In this work, the spatial parameter calculation is modified to accommodate situations where spatial interpolation is not possible as described in the previous work. A real-time 6DoF listening preference test demonstrates that the proposed method provides plausible rendering when the listener is outside of the microphone area. This work is related to the upcoming MPEG-I immersive audio standard (ISO/IEC 23090-4) which is defining 6DoF immersive audio technology for AR and VR scenarios.
ER -