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Journal Article Open Access

Evaluating the Plausibility of Binaural Ambisonics and Parametric Renderings

Authors: Himmelein, Hendrik; Lübeck, Tim; Bau, David; Pörschmann, Christoph

Journal of the Audio Engineering Society · Volume 73 · Issue 11 · pp. 722–733 · November 2025

Abstract

Plausibility has become an established concept for evaluating the overall quality of audio rendering in extended reality. Several studies have assessed plausibility using measured binaural room impulse responses (BRIRs). However, BRIRs measured with an artificial head often suffer from limitations such as high measurement effort and limited individualization. Thus, the present study compares two alternative auralization approaches: an Ambisonics-based method and a parametric approach, using a measured BRIR condition as a reference. The results did not reveal significant differences in overall plausibility between the three conditions. Only slight differences were observed between source positions, which may be attributed to the limited head movement and specific room properties. These findings suggest that the choice of the auralization method has only a minor impact on perceived plausibility. Implications of these results for future research and auralization applications are discussed.

Details

Publication
Journal of the Audio Engineering Society
Volume
73
Issue
11
Pages
722–733
Publication date
November 10, 2025
Affiliation
Institute of Computer and Communication Technology, TH Köln - University of Applied Sciences, 50968 Cologne, Germany; Institute of Computer and Communication Technology, TH Köln - University of Applied Sciences, 50968 Cologne, Germany; Institute of Computer and Communication Technology, TH Köln - University of Applied Sciences, 50968 Cologne, Germany; Institute of Computer and Communication Technology, TH Köln - University of Applied Sciences, 50968 Cologne, Germany; Audio Communication Group, Technische Universität Berlin, 10623 Berlin, Germany; Audio Communication Group, Technische Universität Berlin, 10623 Berlin, Germany; Audio Communication Group, Technische Universität Berlin, 10623 Berlin, Germany (See document for exact affiliation information.)
Type
Journal Article