360° Binaural Room Impulse Response (BRIR) Database for 6DOF spatial perception research
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by Applied Psychoacoustics Lab, University of Huddersfield Authors: Bogdan Bacila and Hyunkook Lee bogdan.bacila@hud.ac.uk, h.lee@hud.ac.uk <strong>Description</strong> An open-access database for 360° binaural room impulse responses (BRIR) captured in a reverberant concert hall. Head-rotated BRIRs were acquired with 3.6° angular resolution for each of 13 different receiver positions, using a custom-made head-rotation system that was automated and integrated with the Huddersfield Acoustical Analysis Research Toolbox. The BRIRs are provided in the SOFA format. The library also contains impulse responses captured using a first-order Ambisonic microphone and an omnidirectional microphone. It is expected that the database would be useful for studying the perception of spatial attributes in a six degrees-of-freedom context. <strong>Folder Structure</strong> The impulse responses are organised into two main folders: * Binaural: Contains the SOFA files and MATLAB files for each position, with a 3.6° angular resolution, recorded with the Neumann KU100 binaural head. * FOA: Contains the First Order Ambisonics audio files in A format and B format for each individual position, recorded with an Sennheiser Ambeo microphone in an end-fire configuration. <strong>Naming Convention</strong> The files are named after their relative position on the stage and the distance from the stage: * C = Centre * L = Left * LW = Left Wide <strong>License</strong> This project is licensed under the CC-BY-4.0 License - see the License.txt file for details <strong>Publication</strong> This database was presented at the Audio Engineering Society 146th International Convention. Download link: http://www.aes.org/e-lib/browse.cfm?elib=20371 <strong>Referencing</strong> If you use the database for your research, please reference it as follows. Bacila, B. I., & Lee, H. (2019). 360° Binaural Room Impulse Response (BRIR) Database for 6DOF Spatial Perception Research. Presented at the Audio Engineering Society Convention 146, Dublin, e-Brief 513



