A fast iris recognition system through optimum feature extraction
Author(s) -
Humayan Kabir Rana,
Md. Shafiul Azam,
Mst. Rashida Akhtar,
Julian M.W. Quinn,
Mohammad Ali Moni
Publication year - 2019
Publication title -
peerj computer science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.806
H-Index - 24
ISSN - 2376-5992
DOI - 10.7717/peerj-cs.184
Subject(s) - biometrics , iris recognition , artificial intelligence , computer science , pattern recognition (psychology) , iris (biosensor) , feature extraction , principal component analysis , discrete wavelet transform , computer vision , wavelet , identification (biology) , feature (linguistics) , fingerprint (computing) , focus (optics) , face (sociological concept) , wavelet transform , social science , linguistics , philosophy , botany , physics , sociology , optics , biology
With an increasing demand for stringent security systems, automated identification of individuals based on biometric methods has been a major focus of research and development over the last decade. Biometric recognition analyses unique physiological traits or behavioral characteristics, such as an iris, face, retina, voice, fingerprint, hand geometry, keystrokes or gait. The iris has a complex and unique structure that remains stable over a person’s lifetime, features that have led to its increasing interest in its use for biometric recognition. In this study, we proposed a technique incorporating Principal Component Analysis (PCA) based on Discrete Wavelet Transformation (DWT) for the extraction of the optimum features of an iris and reducing the runtime needed for iris template classification. The idea of using DWT behind PCA is to reduce the resolution of the iris template. DWT converts an iris image into four frequency sub-bands. One frequency sub-band instead of four has been used for further feature extraction by using PCA. Our experimental evaluation demonstrates the efficient performance of the proposed technique.
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