Do near-field cues enhance the plausibility of non-individual binaural rendering in a dynamic multimodal virtual acoustic scene?

Author:

Arend Johannes M.ORCID,Ramírez MelissaORCID,Liesefeld Heinrich R.ORCID,Pӧrschmann ChristophORCID

Abstract

It is commonly believed that near-field head-related transfer functions (HRTFs) provide perceptual benefits over far-field HRTFs that enhance the plausibility of binaural rendering of nearby sound sources. However, to the best of our knowledge, no study has systematically investigated whether using near-field HRTFs actually provides a perceptually more plausible virtual acoustic environment. To assess this question, we conducted two experiments in a six-degrees-of-freedom multimodal augmented reality experience where participants had to compare non-individual anechoic binaural renderings based on either synthesized near-field HRTFs or intensity-scaled far-field HRTFs and judge which of the two rendering methods led to a more plausible representation. Participants controlled the virtual sound source position by moving a small handheld loudspeaker along a prescribed trajectory laterally and frontally near the head, which provided visual and proprioceptive cues in addition to the auditory cues. The results of both experiments show no evidence that near-field cues enhance the plausibility of non-individual binaural rendering of nearby anechoic sound sources in a dynamic multimodal virtual acoustic scene as examined in this study. These findings suggest that, at least in terms of plausibility, the additional effort of including near-field cues in binaural rendering may not always be worthwhile for virtual or augmented reality applications.

Funder

Bundesministerium für Bildung und Forschung

Publisher

EDP Sciences

Subject

Electrical and Electronic Engineering,Speech and Hearing,Computer Science Applications,Acoustics and Ultrasonics

Reference51 articles.

1. Auditory distance perception in humans: a review of cues, development, neuronal bases, and effects of sensory loss

2. Auditory localization of nearby sources. Head-related transfer functions

3. Brungart D.S., Rabinowitz W.M.: Auditory localization in the near-field, in Proc. of the 3rd International Conference on Auditory Display, Palo Alto, CA, USA. 1996, pp. 1–5.

4. Arend J.M., Neidhardt A., Pörschmann C.: Measurement and perceptual evaluation of a spherical near-field HRTF set, in Proc. of the 29th Tonmeistertagung – VDT International Convention, Cologne, Germany. 2016, pp. 356–363.

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