Palmprint verification based on 2D – Gabor wavelet and pulse-coupled neural network

To alleviate the limitation that the recent texture based algorithms for palmprint recognition yield unsatisfactory robustness to the variations of orientation, position and illumination in capturing palmprint images, this paper describes a novel texture based algorithm for palmprint recognition com...

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Published inKnowledge-based systems Vol. 27; pp. 451 - 455
Main Authors Wang, Xuan, Lei, Li, Wang, Mingzhe
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.03.2012
Subjects
Online AccessGet full text
ISSN0950-7051
1872-7409
DOI10.1016/j.knosys.2011.10.008

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Abstract To alleviate the limitation that the recent texture based algorithms for palmprint recognition yield unsatisfactory robustness to the variations of orientation, position and illumination in capturing palmprint images, this paper describes a novel texture based algorithm for palmprint recognition combining 2D Gabor wavelets and pulse coupled neural network (PCNN). In the proposed algorithm, palmprint images are decomposed by 2D Gabor wavelets, and then PCNN is employed to imitate the creatural vision perceptive process and decompose each Gabor subband into a series of binary images. Entropies for these binary images are calculated and regarded as features. A support vector machine-based classifier is employed to implement classification. Experimental results show that the proposed approach yields a better performance in terms of the correct classification percentages and relatively high robustness to the variations of orientation, position and illumination compared with the recent texture based approaches.
AbstractList To alleviate the limitation that the recent texture based algorithms for palmprint recognition yield unsatisfactory robustness to the variations of orientation, position and illumination in capturing palmprint images, this paper describes a novel texture based algorithm for palmprint recognition combining 2D Gabor wavelets and pulse coupled neural network (PCNN). In the proposed algorithm, palmprint images are decomposed by 2D Gabor wavelets, and then PCNN is employed to imitate the creatural vision perceptive process and decompose each Gabor subband into a series of binary images. Entropies for these binary images are calculated and regarded as features. A support vector machine-based classifier is employed to implement classification. Experimental results show that the proposed approach yields a better performance in terms of the correct classification percentages and relatively high robustness to the variations of orientation, position and illumination compared with the recent texture based approaches.
Author Wang, Xuan
Lei, Li
Wang, Mingzhe
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Keywords Support vector machine (SVM)
Entropy
Palmprint recognition
Pulse-coupled neural network
Gabor wavelet
Language English
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  doi: 10.1007/s11063-007-9057-6
– year: 2000
  ident: 10.1016/j.knosys.2011.10.008_b0020
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Snippet To alleviate the limitation that the recent texture based algorithms for palmprint recognition yield unsatisfactory robustness to the variations of...
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elsevier
SourceType Enrichment Source
Index Database
Publisher
StartPage 451
SubjectTerms Entropy
Gabor wavelet
Palmprint recognition
Pulse-coupled neural network
Support vector machine (SVM)
Title Palmprint verification based on 2D – Gabor wavelet and pulse-coupled neural network
URI https://dx.doi.org/10.1016/j.knosys.2011.10.008
Volume 27
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