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Journal Article Open Access

Perceptual Evaluation of Different Methods for Binaural Rendering of Recordings With Various Microphone Arrays

Authors: Lübeck, Tim; Scheer, Christian; Ackermann, David; Brinkmann, Fabian; Pörschmann, Christoph; Weinzierl, Stefan; Ahrens, Jens; Arend, Johannes M.

Journal of the Audio Engineering Society · Volume 74 · Issue 5 · pp. 256–269 · May 2026

Abstract

Binaural reproduction of microphone array recordings has become an important technology in the research and consumer sectors. Several commercially available spherical microphone arrays have been introduced over the years along with various methods for binaural rendering of array recordings. Most of these methods have been evaluated individually, typically using only one specific microphone array. However, a comprehensive and systematic perceptual evaluation combining different methods and various microphone arrays is lacking. This study presents the results of a listening experiment comparing the motion-tracked binaural method, various Ambisonic binaural decoders, and the parametric binaural rendering method COMPASS using loudspeaker orchestra recordings with six different microphone arrays from two rooms, the Berliner Philharmonie and a laboratory space resembling a small chamber music venue. The experiment assessed the binaural renderings with respect to overall listening experience and four perceptual attributes from the Spatial Audio Quality Inventory in comparison to a reference recorded with a head and torso simulator. The results provide detailed insights into which rendering method and array combination provides a high overall listening experience while preserving the assessed perceptual attributes externalization, coloration, source position, and presence. Moreover, the results indicate the extent to which the assessed perceptual attributes contribute to overall listening experience.

Details

Publication
Journal of the Audio Engineering Society
Volume
74
Issue
5
Pages
256–269
Publication date
May 12, 2026
Affiliation
Institute of Computer and Communication Technology, TH Köln - University of Applied Sciences, Cologne, Germany; Institute of Computer and Communication Technology, TH Köln - University of Applied Sciences, Cologne, Germany; Audio Communication Group, Technische Universität Berlin, Berlin, Germany; Audio Communication Group, Technische Universität Berlin, Berlin, Germany; Audio Communication Group, Technische Universität Berlin, Berlin, Germany; Audio Communication Group, Technische Universität Berlin, Berlin, Germany; Audio Communication Group, Technische Universität Berlin, Berlin, Germany; Institute of Sound and Vibration Engineering, HSD - University of Applied Sciences, Düsseldorf, Germany; Audio Technology Group, Division of Applied Acoustics, Chalmers University of Technology, Gothenburg, Sweden; Acoustics Lab, Department of Information and Communications Engineering, Aalto University, Espoo, Finland (See document for exact affiliation information.)
Type
Journal Article