Title :
Perceptual Reproduction of Spatial Sound Using Loudspeaker-Signal-Domain Parametrization
Author :
Vilkamo, Juha ; Delikaris-Manias, Symeon
Author_Institution :
Dept. of Signal Process. & Acoust., Aalto Univ., Espoo, Finland
Abstract :
Adaptive perceptual spatial sound reproduction techniques that employ a parametric model describing the properties of the sound field can reproduce spatial sound with high perceptual accuracy when compared to linear techniques. On the other hand, applying a sound-field model to control the reproduced sound may compromise the perceived quality of individual channels in cases where the model does not match the sound field. An alternative parametrization is proposed that estimates directly the perceptually relevant parameters for the target loudspeaker signals without modeling the sound field. At the synthesis stage, the loudspeaker signals with the target parametric properties are generated from the microphone signals with regularized least squares mixing and decorrelation. It is shown through listening experiments that the proposed method provides on average the overall perceived spatial sound reproduction quality of a state-of the-art parametric spatial sound reproduction technique, while solving the past shortcomings related to the perceived quality of the individual channels.
Keywords :
acoustic field; acoustic signal processing; adaptive signal processing; decorrelation; hearing; least squares approximations; loudspeakers; microphones; parameter estimation; sound reproduction; adaptive perceptual spatial sound reproduction techniques; decorrelation; linear techniques; loudspeaker-signal-domain parametrization; microphone signals; parametric model; parametric spatial sound reproduction technique; perceptual reproduction; regularized least squares mixing; sound-field model; spatial sound reproduction quality; Arrays; Covariance matrices; Decorrelation; Loudspeakers; Microphones; Speech; Time-frequency analysis; Least-squares mixing; microphone array signal processing; sound-field parametrization; spatial audio reproduction;
Journal_Title :
Audio, Speech, and Language Processing, IEEE/ACM Transactions on
DOI :
10.1109/TASLP.2015.2443977