In this paper we propose a method to customize a spherical head model for binaural sound rendering based on the listener's anthropometry. Interaural level difference (ILD) information from a HRTF database is used to subjectively tune the radius parameter of the spherical model so as to best fit individual measures. Multiple linear regression on anthropometric data is performed, yielding a closed formula relating the three head dimensions to the ILD-optimized radius. The effectiveness of the proposed radius estimation method in predicting the correct ILD with a spherical model is compared to that of alternative methods from the literature. Results show that the average spectral distortion between experimental and predicted ILDs with our meth...
Headphone-based spatial audio simulations rely on Head Related Transfer Functions (HRTFs) in order t...
There are several methods to get individualized HRTFs such as measurements, syntheses, or selection....
In binaural audio systems, for an optimal virtual acoustic space a set of head-related transfer func...
In this paper we propose a method to customize a spherical head model for binaural sound rendering b...
Head related transfer functions (HRTFs) are needed to present virtual spatial sound sources via head...
Head-related transfer functions (HRTFs) capture the free-field sound transmission from a sound sourc...
cote interne IRCAM: Busson04aNone / NoneNational audienceThe spatialization rendering with binaural ...
Generalized head-related transfer functions (HRTFs) represent a cheap and straightforward mean of pr...
The individualization of head related transfer functions (HRTFs) can make an important contribution ...
Human sound localization helps to pay attention to spatially separated speakers using interaural lev...
One of the most popular techniques for creating spatialized virtual sounds is based on the use of He...
This paper proposes an image-guided HRTF selection procedure that exploits the relation between feat...
Head-related transfer functions (HRTFs) incorporate fundamental cues required for human spatial hear...
Binaural reproduction of high-quality spatial sound has gained considerable interest with the recent...
Ambisonics is a spatial audio technique appropriate for dynamic binaural rendering due to its sound ...
Headphone-based spatial audio simulations rely on Head Related Transfer Functions (HRTFs) in order t...
There are several methods to get individualized HRTFs such as measurements, syntheses, or selection....
In binaural audio systems, for an optimal virtual acoustic space a set of head-related transfer func...
In this paper we propose a method to customize a spherical head model for binaural sound rendering b...
Head related transfer functions (HRTFs) are needed to present virtual spatial sound sources via head...
Head-related transfer functions (HRTFs) capture the free-field sound transmission from a sound sourc...
cote interne IRCAM: Busson04aNone / NoneNational audienceThe spatialization rendering with binaural ...
Generalized head-related transfer functions (HRTFs) represent a cheap and straightforward mean of pr...
The individualization of head related transfer functions (HRTFs) can make an important contribution ...
Human sound localization helps to pay attention to spatially separated speakers using interaural lev...
One of the most popular techniques for creating spatialized virtual sounds is based on the use of He...
This paper proposes an image-guided HRTF selection procedure that exploits the relation between feat...
Head-related transfer functions (HRTFs) incorporate fundamental cues required for human spatial hear...
Binaural reproduction of high-quality spatial sound has gained considerable interest with the recent...
Ambisonics is a spatial audio technique appropriate for dynamic binaural rendering due to its sound ...
Headphone-based spatial audio simulations rely on Head Related Transfer Functions (HRTFs) in order t...
There are several methods to get individualized HRTFs such as measurements, syntheses, or selection....
In binaural audio systems, for an optimal virtual acoustic space a set of head-related transfer func...