DocumentCode
3070089
Title
Relative Iris Codes
Author
Thoonsangngam, Peeranat ; Thainimit, Somying ; Areekul, Vutipong
Author_Institution
Kasetsart Univ., Bangkok
fYear
2007
fDate
15-18 Dec. 2007
Firstpage
40
Lastpage
45
Abstract
This paper proposes a new scheme to generate iris codes based on relative measure of local iris texture. The local characteristic of iris texture is analyzed using 2D Gabor wavelets. Twelve Gabor kernels, four frequencies and three orientations, are constructed and convoluted with an iris image. To inherit relationship of local iris texture among pixels, Gabor magnitude and phase of a reference pixel is compared with Gabor magnitudes and phases of the other four pixels. These pixels are located away from the reference pixel by 8timesd pixels, where d=1, 2, ..., 4. Each comparison, a 2-bit primitive iris code is generated. Least significant bit of the primitive code describes how Gabor magnitudes of the two pixels are related. This bit is set to ´1´ if Gabor magnitude of a reference pixel is less than magnitude of the other pixel, otherwise it is set to ´0´. Another bit of the 2-bit primitive code describes relative measure of the obtained phase values. This bit is set to ´1´ if difference of the obtained phases is within plusmnpi/2 , otherwise it is set to ´0´. In our scheme, each pixel is described using an 8-bit iris code. Matching between two iris codes is implemented using a look-up table technique. The table contains a number of matches of the primitive code of the two iris codes. By utilizing the look-up table technique, computational time of our 1:1 matching scheme is 2.2 milliseconds. Equal- Error-Rate (EER) of the proposed system using CASIA1.0 iris database is 0.0003%EER
Keywords
Gabor filters; biometrics (access control); image matching; image recognition; image texture; table lookup; visual databases; wavelet transforms; 2-bit primitive code; 2D Gabor wavelet; equal-error-rate analysis; image matching; iris database; iris image; iris texture; look-up table technique; relative iris codes; Feature extraction; Filters; Humans; Image texture analysis; Iris recognition; Pattern recognition; Signal processing; Table lookup; Waveguide discontinuities; Wavelet analysis; Biometrics; iris recognition; iris texture analysis; relative iris codes;
fLanguage
English
Publisher
ieee
Conference_Titel
Signal Processing and Information Technology, 2007 IEEE International Symposium on
Conference_Location
Giza
Print_ISBN
978-1-4244-1835-0
Electronic_ISBN
978-1-4244-1835-0
Type
conf
DOI
10.1109/ISSPIT.2007.4458113
Filename
4458113
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