DocumentCode
3610782
Title
An Information Theoretic Approach Toward Assessing Perceptual Audio Quality Using EEG
Author
Mehta, Ketan ; Kliewer, Jorg
Author_Institution
Klipsch School of Electrical and Computer Engineering, New Mexico State University, Las Cruces, NM, USA
Volume
1
Issue
2
fYear
2015
fDate
6/1/2015 12:00:00 AM
Firstpage
176
Lastpage
187
Abstract
In this paper, we propose a novel information theoretic model to interpret the entire “transmission chain” comprising stimulus generation, brain processing by the human subject, and the electroencephalograph (EEG) response measurements as a nonlinear, time-varying communication channel with memory. We use mutual information (MI) as a measure to assess audio quality perception by directly measuring the brainwave responses of the human subjects using a high resolution EEG. Our focus here is on audio where the quality is impaired by time varying distortions. In particular, we conduct experiments where subjects are presented with audio whose quality varies with time between different possible quality levels. The recorded EEG measurements can be modeled as a multidimensional Gaussian mixture model (GMM). In order to make the computation of the MI feasible, we present a novel low-complexity approximation technique for the differential entropy of the multidimensional GMM. We find the proposed information theoretic approach to be successful in quantifying subjective audio quality perception, with the results being consistent across different music sequences and distortion types.
Keywords
Brain modeling; Distortion; Electroencephalography; Entropy; Sensors; Testing; Gaussian mixture model (GMM); Mutual information; audio quality; electroencephalography (EEG); perception;
fLanguage
English
Journal_Title
Molecular, Biological and Multi-Scale Communications, IEEE Transactions on
Publisher
ieee
Type
jour
DOI
10.1109/TMBMC.2015.2501744
Filename
7331309
Link To Document