DocumentCode
1757972
Title
Earprint: Transient Evoked Otoacoustic Emission for Biometrics
Author
Yuxi Liu ; Hatzinakos, Dimitrios
Author_Institution
Edward S. Rogers Sr. Dept. of Electr. & Comput. Eng., Univ. of Toronto, Toronto, ON, Canada
Volume
9
Issue
12
fYear
2014
fDate
Dec. 2014
Firstpage
2291
Lastpage
2301
Abstract
Biometrics is attracting increasing attention in privacy and security concerned issues, such as access control and remote financial transaction. However, advanced forgery and spoofing techniques are threatening the reliability of conventional biometric modalities. This has been motivating our investigation of a novel yet promising modality transient evoked otoacoustic emission (TEOAE), which is an acoustic response generated from cochlea after a click stimulus. Unlike conventional modalities that are easily accessible or captured, TEOAE is naturally immune to replay and falsification attacks as a physiological outcome from human auditory system. In this paper, we resort to wavelet analysis to derive the time-frequency representation of such nonstationary signal, which reveals individual uniqueness and long-term reproducibility. A machine learning technique linear discriminant analysis is subsequently utilized to reduce intrasubject variability and further capture intersubject differentiation features. Considering practical application, we also introduce a complete framework of the biometric system in both verification and identification modes. Comparative experiments on a TEOAE data set of biometric setting show the merits of the proposed method. Performance is further improved with fusion of information from both ears.
Keywords
authorisation; biometrics (access control); data privacy; learning (artificial intelligence); otoacoustic emissions; sensor fusion; signal representation; time-frequency analysis; TEOAE; access control; acoustic response; advanced forgery techniques; advanced spoofing techniques; biometrics; click stimulus; cochlea; data privacy; data security; earprint; falsification attacks; financial transaction; human auditory system; information fusion; machine learning technique linear discriminant analysis; nonstationary signal time-frequency representation; replay attacks; transient evoked otoacoustic emission; wavelet analysis; Auditory system; Biometrics (access control); Feature extraction; Linear discriminant analysis; Time-frequency analysis; Robust Biometric Modality; Robust biometric modality; Time-frequency Analysis; Transient Evoked Otoacoustic Emission; biometric fusion; linear discriminant analysis; time-frequency analysis; transient evoked otoacoustic emission;
fLanguage
English
Journal_Title
Information Forensics and Security, IEEE Transactions on
Publisher
ieee
ISSN
1556-6013
Type
jour
DOI
10.1109/TIFS.2014.2361205
Filename
6914592
Link To Document