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An audio-visual model for virtual reality of the Munich underground station Theresienstraße. The model has been created for a highly accurate acoustic rendering over loudspeaker arrays and headphones and for visual representation in virtual reality. The package encompasses a highly accurate spatial geometric model of the underground station, which can be used for acoustic simulations, and a visual model for virtual reality. Both models has been calibrated to a 3D laser scan of the environment. It further includes a definition of two acoustic scenes for the purpose of audiology and hearing research together with the associated measurements of the acoustic impulse responses using a binaural recording system (binaural room impulse responses), a spherical microphone array, and omnidirectional microphones. Further measurements include HRTF measurements and anechoic measurements of the directivity of the sound source.
{"references": ["\u013d. Hl\u00e1dek, S. D. Ewert, and B. U. Seeber, \"Communication conditions in virtual acoustic scenes in an underground station,\" in Proc. International Conference on Immersive and 3D Audio, 8-10 September 2021, Bologna, Italy, 2021 [Online]. Available: http://arxiv.org/abs/2106.15916"]}
Funded by the Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) – Projektnummer 352015383 – SFB 1330, Project C5.
acoustics, impulse response, HRTF, spherical microphone array, room acoustic simulation, audiology, virtual reality, audio-visual scene
acoustics, impulse response, HRTF, spherical microphone array, room acoustic simulation, audiology, virtual reality, audio-visual scene
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