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Iris Recognition using Multi-Resolution Frequency Analysis and Levenberg-Marquardt Back-Propagation  

Jeong Yu-Jeong (KIMICS)
Choi Gwang-Mi (KIMICS)
Abstract
In this paper, we suggest an Iris recognition system with an excellent recognition rate and confidence as an alternative biometric recognition technique that solves the limit in an existing individual discrimination. For its implementation, we extracted coefficients feature values with the wavelet transformation mainly used in the signal processing, and we used neural network to see a recognition rate. However, Scale Conjugate Gradient of nonlinear optimum method mainly used in neural network is not suitable to solve the optimum problem for its slow velocity of convergence. So we intended to enhance the recognition rate by using Levenberg-Marquardt Back-propagation which supplements existing Scale Conjugate Gradient for an implementation of the iris recognition system. We improved convergence velocity, efficiency, and stability by changing properly the size according to both convergence rate of solution and variation rate of variable vector with the implementation of an applied algorithm.
Keywords
Levenberg-Marquardt Back-Propagation; Multi-Resolution Frequency Analysis; Conjugate Gradient;
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