DocumentCode
252439
Title
Fingerprint templates generated by the fractional fourier, cosine and sine transforms and their generation conditions
Author
Yoshimura, Hiroyuki
Author_Institution
Grad. Sch. of Eng., Chiba Univ., Chiba, Japan
fYear
2014
fDate
8-10 Dec. 2014
Firstpage
30
Lastpage
34
Abstract
Recently, we have proposed new fingerprint templates based on the 1D discrete fractional Fourier, cosine and sine transforms (DFRT, DFCT and DFST) to realize the fingerprint recognition system with high recognition accuracy and high robustness against attacks. In the previous study, I evaluated the recognition accuracy and robustness of the generated templates of the fingerprint data of the FVC 2002. As a result, I found the most appropriate templates are the amplitude distributions of the DFCT and DFST with a size of 96 by 96 pixels under the condition that the range of the transforms´ orders is between 0.1 and 1.0. The EER was an order of 10-6% and the PSNR was an order of several dB. However, a set of the transforms´ orders was changed for different fingers. In this study, the appropriate templates are decided under the condition that only one set is used for different fingers. As a result, the most appropriate templates can be obtained under the same generation conditions, though only the range of transforms´ orders is different, i.e., between 0.3 and 1.0. The EER is 1.86% less than that (2.65%) of the original fingerprint images. The PSNR is an order of several dB.
Keywords
discrete Fourier transforms; discrete cosine transforms; fingerprint identification; 1D discrete fractional Fourier transforms; 1D discrete fractional cosine transforms; 1D discrete fractional sine transforms; DFCT; DFRT; DFST; FVC 2002 fingerprint data; PSNR; amplitude distribution; fingerprint images; fingerprint recognition system; fingerprint template generation; Biomedical imaging; Fingerprint recognition; Fingers; Image recognition; Manganese; PSNR; Robustness; biometrics; fingerprint; fractional Fourier transform; fractional cosine transform; fractional sine transform; image processing; template;
fLanguage
English
Publisher
ieee
Conference_Titel
Internet Security (WorldCIS), 2014 World Congress on
Conference_Location
London
Type
conf
DOI
10.1109/WorldCIS.2014.7028161
Filename
7028161
Link To Document