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      KCI등재 SCIE SCOPUS

      Finger Vein Recognition Based on Multi-Orientation Weighted Symmetric Local Graph Structure = Finger Vein Recognition Based on Multi-Orientation Weighted Symmetric Local Graph Structure

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      https://www.riss.kr/link?id=A103352223

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      다국어 초록 (Multilingual Abstract)

      Finger vein recognition is a biometric technology using finger veins to authenticate a person, and due to its high degree of uniqueness, liveness, and safety, it is widely used. The traditional Symmetric Local Graph Structure (SLGS) method only consid...

      Finger vein recognition is a biometric technology using finger veins to authenticate a person, and due to its high degree of uniqueness, liveness, and safety, it is widely used. The traditional Symmetric Local Graph Structure (SLGS) method only considers the relationship between the image pixels as a dominating set, and uses the relevant theories to tap image features. In order to better extract finger vein features, taking into account location information and direction information between the pixels of the image, this paper presents a novel finger vein feature extraction method, Multi-Orientation Weighted Symmetric Local Graph Structure (MOW-SLGS), which assigns weight to each edge according to the positional relationship between the edge and the target pixel. In addition, we use the Extreme Learning Machine (ELM) classifier to train and classify the vein feature extracted by the MOW-SLGS method. Experiments show that the proposed method has better performance than traditional methods.

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      참고문헌 (Reference)

      1 "http://mla.sdu.edu.cn/sdumla-hmt.html"

      2 Y. R. Chen, "Variational Bayesian Extreme Learning Machine" 1-12, 2014

      3 J. F. Yang, "Scatting removal for finger-vein image restoration" 12 (12): 3627-3640, 2012

      4 S. H. Pang, "Rotation Invariant Finger Vein Recognition" 151-156, 2012

      5 Y. Lu, "Robust Finger Vein ROI Localization Based on Flexible Segmentation" 13 : 14339-14366, 2013

      6 A. M. Martinez, "PCA versus LDA" 23 (23): 228-233, 2011

      7 M. Kono, "Near-Infrared Finger Vein Patterns for Personal Identification" 41 (41): 7429-7436, 2002

      8 T. Ojala, "Multi-resolution Gray-scale and Rotation Invariant Texture Classification with Local Binary Patterns" 24 (24): 971-987, 2002

      9 H. Kim, "Illumination normalization for SIFT based finger vein authentication" 7432 : 21-30, 2012

      10 C. J. Liu, "ICA Color Space for Pattern Recognition" 20 (20): 248-257, 2009

      1 "http://mla.sdu.edu.cn/sdumla-hmt.html"

      2 Y. R. Chen, "Variational Bayesian Extreme Learning Machine" 1-12, 2014

      3 J. F. Yang, "Scatting removal for finger-vein image restoration" 12 (12): 3627-3640, 2012

      4 S. H. Pang, "Rotation Invariant Finger Vein Recognition" 151-156, 2012

      5 Y. Lu, "Robust Finger Vein ROI Localization Based on Flexible Segmentation" 13 : 14339-14366, 2013

      6 A. M. Martinez, "PCA versus LDA" 23 (23): 228-233, 2011

      7 M. Kono, "Near-Infrared Finger Vein Patterns for Personal Identification" 41 (41): 7429-7436, 2002

      8 T. Ojala, "Multi-resolution Gray-scale and Rotation Invariant Texture Classification with Local Binary Patterns" 24 (24): 971-987, 2002

      9 H. Kim, "Illumination normalization for SIFT based finger vein authentication" 7432 : 21-30, 2012

      10 C. J. Liu, "ICA Color Space for Pattern Recognition" 20 (20): 248-257, 2009

      11 A. A. Ross, "Handbook of Multibiometrics" Berlin 2006

      12 A. K. Jain, "Handbook of Biometrics" Berlin 2008

      13 S. J. Xie, "Guided Gabor filter for finger vein pattern extraction" 118-123, 2012

      14 J. D. Wu, "Finger-vein pattern identification using principal component analysis and the neural network technique" 38 (38): 5423-5427, 2011

      15 B. A. Rosdi, "Finger vein recognition using local line binary pattern" 11 : 11357-11371, 2011

      16 X. J. Meng, "Finger vein recognition based on local directional code" 12 : 14937-14952, 2012

      17 G. P. Yang, "Finger vein recognition based on a personalized best bit map" 12 : 1738-1757, 2012

      18 G. P. Yang, "Finger vein recognition based on (2D) 2PCA and metric learning" 1-9, 2012

      19 yu lu, "Finger Vein Recognition Using Generalized Local Line Binary Pattern" 한국인터넷정보학회 8 (8): 1766-1784, 2014

      20 F. A. Mohd, "Face recognition with Symmetric Local Graph Structure (SLGS)" 41 : 6131-6137, 2014

      21 E. E. A. Abusham, "Face recognition using local graph structure (LGS)" 6762 : 169-175, 2012

      22 M. A. Turk, "Face Recognition Using Eigen Faces" 586-591, 1991

      23 H. K. Bashier, "Face Detection Based on Graph Structure and Neural Networks" 7 (7): 683-691, 2012

      24 G. B. Huang, "Extreme Learning Machine : Theory and Applications" 70 (70): 489-501, 2006

      25 Y. Lu, "Efficient descriptor of histogram of salient edge orientation map for finger vein recognition" 53 (53): 4585-4593, 2014

      26 S. J. Xie, "Component-based Extreme Learning Machines for Finger Vein Recognition" 6 (6): 446-461, 2014

      27 M. Kono, "A new method for the identification of individuals by using of vein pattern matching of a finger" 9-12, 2000

      28 W. S. Song, "A finger-vein verification system using mean curvature" 32 (32): 1541-1547, 2011

      29 T. Ojala, "A comparative study of texture measures with classification based on feature distributions" 29 (29): 51-59, 1996

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      학술지등록 한글명 : KSII Transactions on Internet and Information Systems
      외국어명 : KSII Transactions on Internet and Information Systems
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2013-10-01 평가 등재학술지 선정 (기타) KCI등재
      2011-01-01 평가 등재후보학술지 유지 (기타) KCI등재후보
      2009-01-01 평가 SCOPUS 등재 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.45 0.21 0.37
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.32 0.29 0.244 0.03
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