DocumentCode :
1764781
Title :
Extracting Valley-Ridge Lines from Point-Cloud-Based 3D Fingerprint Models
Author :
Xufang Pang ; Zhan Song ; Wuyuan Xie
Author_Institution :
Shenzhen Inst. of Adv. Technol., Shenzhen, China
Volume :
33
Issue :
4
fYear :
2013
fDate :
July-Aug. 2013
Firstpage :
73
Lastpage :
81
Abstract :
3D fingerprinting is an emerging technology with the distinct advantage of touchless operation. More important, 3D fingerprint models contain more biometric information than traditional 2D fingerprint images. However, current approaches to fingerprint feature detection usually must transform the 3D models to a 2D space through unwrapping or other methods, which might introduce distortions. A new approach directly extracts valley-ridge features from point-cloud-based 3D fingerprint models. It first applies the moving least-squares method to fit a local paraboloid surface and represent the local point cloud area. It then computes the local surface´s curvatures and curvature tensors to facilitate detection of the potential valley and ridge points. The approach projects those points to the most likely valley-ridge lines, using statistical means such as covariance analysis and cross correlation. To finally extract the valley-ridge lines, it grows the polylines that approximate the projected feature points and removes the perturbations between the sampled points. Experiments with different 3D fingerprint models demonstrate this approach´s feasibility and performance.
Keywords :
feature extraction; fingerprint identification; least squares approximations; object detection; statistical analysis; 2D fingerprint image; 3D model; biometric information; covariance analysis; cross correlation; feature extraction; fingerprint feature detection; moving least-squares method; paraboloid surface; point-cloud-based 3D fingerprint model; touchless operation; valley-ridge line extraction; Cameras; Computational modeling; Feature extraction; Fingerprint recognition; Solid modeling; Surface fitting; Three dimensional displays; 3D fingerprints; Cameras; Computational modeling; Feature extraction; Fingerprint recognition; Fingers; Solid modeling; Surface fitting; computer graphics; curvatures; feature detection; fingerprint detection; valley-ridge lines;
fLanguage :
English
Journal_Title :
Computer Graphics and Applications, IEEE
Publisher :
ieee
ISSN :
0272-1716
Type :
jour
DOI :
10.1109/MCG.2012.128
Filename :
6392175
Link To Document :
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