The head-related transfer functions (HRTFs) describe individual acoustic transformation that sound sources undergo due to human anatomy before arriving at the left and right tympanic membranes. The resulting spectral modifications are the main localization cues for elevation detection in space. In this paper, synthetic HRTF mod- els able to render the vertical spatial dimension in virtual auditory displays, are evaluated via auditory models. Perceptually-motivated metrics describe the output of 4 virtual experiments that numeri- cally simulate real listening experiments for 20 virtual subjects. The current implementation considers a limited set of parameters for a structural model of the pinna acting as a proof-of-concept of such approach. ...
This paper explores the limits of human localization of sound sources when listening with non-indivi...
The veracity of virtual audio is degraded by the use of non-individualized head-related transfer fun...
This paper addresses the problem of modeling head-related transfer functions (HRTFs) for 3-D audio r...
The head-related transfer functions (HRTFs) describe individual acoustic transformation that sound s...
This paper deals with the issue of individualizing the head-related transfer function (HRTF) renderi...
This paper deals with the issue of individualizing the head-related transfer function (HRTF) renderi...
One of the most popular techniques for creating spatialized virtual sounds is based on the use of He...
Achieving a full 3D auditory experience with head-related transfer functions (HRTFs) is still one of...
This paper proposes an image-guided HRTF selection procedure that exploits the relation between feat...
A novel approach to the selection of generic head-related transfer functions (HRTFs) for binaural au...
Head-Related Transfer Functions (HRTF's) describe the directionally dependent acoustic filtering pro...
Auditory spatial localization in humans is performed using a combination of interaural time differen...
One of the main challenges of spatial audio rendering in headphones is the crucial work behind the p...
Accurate localization of sound in 3-D space is based on vari-ations in the spectrum of sound sources...
This paper addresses the problem of modeling head-related transfer functions (HRTFs) for 3-D audio r...
This paper explores the limits of human localization of sound sources when listening with non-indivi...
The veracity of virtual audio is degraded by the use of non-individualized head-related transfer fun...
This paper addresses the problem of modeling head-related transfer functions (HRTFs) for 3-D audio r...
The head-related transfer functions (HRTFs) describe individual acoustic transformation that sound s...
This paper deals with the issue of individualizing the head-related transfer function (HRTF) renderi...
This paper deals with the issue of individualizing the head-related transfer function (HRTF) renderi...
One of the most popular techniques for creating spatialized virtual sounds is based on the use of He...
Achieving a full 3D auditory experience with head-related transfer functions (HRTFs) is still one of...
This paper proposes an image-guided HRTF selection procedure that exploits the relation between feat...
A novel approach to the selection of generic head-related transfer functions (HRTFs) for binaural au...
Head-Related Transfer Functions (HRTF's) describe the directionally dependent acoustic filtering pro...
Auditory spatial localization in humans is performed using a combination of interaural time differen...
One of the main challenges of spatial audio rendering in headphones is the crucial work behind the p...
Accurate localization of sound in 3-D space is based on vari-ations in the spectrum of sound sources...
This paper addresses the problem of modeling head-related transfer functions (HRTFs) for 3-D audio r...
This paper explores the limits of human localization of sound sources when listening with non-indivi...
The veracity of virtual audio is degraded by the use of non-individualized head-related transfer fun...
This paper addresses the problem of modeling head-related transfer functions (HRTFs) for 3-D audio r...