Related Experiment Video
Updated: Jun 24, 2026

A Method to Study Adaptation to Left-Right Reversed Audition
Published on: October 29, 2018
A psychophysical evaluation of near-field head-related transfer functions synthesized using a distance variation
Alan Kan1, Craig Jin, André van Schaik
1Computing and Audio Research Laboratory, School of Electrical and Information Engineering, University of Sydney, Sydney, New South Wales, Australia. akan@ee.usyd.edu.du
Abstract:
A method for synthesizing near-field head-related transfer functions (HRTFs) from far-field HRTFs measured using an acoustic point-source of sound is presented. Near-field HRTFs are synthesized by applying an analytic function describing the change in the transfer function when the location of a sound source changes from the far-field to the near-field: the distance variation function (DVF). The DVF is calculated from a rigid sphere model and approximates the change in the frequency-dependent interaural level cues as a function of the change in sound source distance. Using a sound localization experiment, the fidelity of the near-field virtual auditory space (VAS) generated using this technique is compared to that obtained by simply adjusting the intensity of the VAS stimulus to simulate changes in distance. Results show improved distance perception for sounds at simulated distances of up to 60 cm using the DVF compared to simple intensity adjustment, while maintaining directional accuracy. The largest improvement for distance perception were for sound sources located to the side and within 40 cm. When intensity was removed as a cue for sound source distance from near-field sounds generated using the DVF, results showed some discrimination of sound source distances but, in general, distance perception accuracy was poor.
More Related Videos
Related Concept Videos
Network Function of a Circuit
Frequency Response of a Circuit
The transfer function is pivotal in characterizing how these circuits react to various frequencies, facilitating a profound understanding of their behavior. An essential parameter is the time constant, signifying the...

