DocumentCode
2828384
Title
A method based on continuous spectrum analysis and artificial immune network optimization algorithm for fingerprint image ridge distance estimation
Author
Zhan, Xiaosi ; Yin, Yilong ; Sun, Zhaocai ; Chen, Yun
Author_Institution
Comput. Dept., Fuyang Normal Coll., China
fYear
2005
fDate
21-23 Sept. 2005
Firstpage
728
Lastpage
733
Abstract
It is important for improving the performance of automatic fingerprint identification system to estimate the ridge distance accurately. The traditional Fourier transform spectral analysis method had the worse redundancy degree in estimating the ridge distance because it was based on the two-dimension discrete Fourier spectrum. The statistical window method cannot obtain the accurate ridge distance because of the noises and the warp of the statistical value. The paper introduces the sampling theorem and artificial immune network into the fingerprint image ridge distance estimation method, transforms the discrete spectrum into the continuous spectrum, acquires the local peak points adopting the artificial immune network optimization algorithm and then obtains the ridge distance in the frequency field. The experimental results indicate that the ridge distance is more accurate and has improved the accuracy rate of automatic fingerprint identification system to a certain extent.
Keywords
fingerprint identification; genetic algorithms; image enhancement; image segmentation; spectral analysis; artificial immune network optimization algorithm; automatic fingerprint identification system; continuous spectrum analysis; fingerprint image ridge distance estimation; sampling theorem; Algorithm design and analysis; Discrete transforms; Fingerprint recognition; Fourier transforms; Frequency estimation; Image analysis; Image matching; Image sampling; Optimization methods; Spectral analysis;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer and Information Technology, 2005. CIT 2005. The Fifth International Conference on
Print_ISBN
0-7695-2432-X
Type
conf
DOI
10.1109/CIT.2005.17
Filename
1562742
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