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Optimal Generation of Iris Codes for Iris Recognition

机译:虹膜识别的最佳虹膜代码生成

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摘要

The calculation of binary iris codes from feature values (e.g., the result of Gabor transform) is a key step in iris recognition systems. Traditional binarization method based on the sign of feature values has achieved very promising performance. However, currently, little research focuses on a deeper insight into this binarization method to produce iris codes. In this paper, we illustrate the iris code calculation from the perspective of optimization. We demonstrate that the traditional iris code is the solution of an optimization problem, which minimizes the distance between the feature values and the iris codes. Furthermore, we show that more effective iris codes can be obtained by adding terms to the objective function of this optimization problem. We investigate two additional objective terms. The first objective term exploits the spatial relationships of the bits in different positions of an iris code. The second objective term mitigates the influence of less reliable bits in iris codes. The two objective terms can be applied to the optimization problem individually, or in a combined scheme. We conduct experiments on four benchmark datasets with varying image quality. The experimental results demonstrate that the iris code produced by solving the optimization problem with the two additional objective terms achieves a generally improved performance in comparison to the traditional iris code calculated by binarizing feature values based on their signs.
机译:从特征值(例如,Gabor变换的结果)计算二进制虹膜代码是虹膜识别系统中的关键步骤。传统的基于特征值符号的二值化方法取得了非常有希望的性能。然而,目前,很少有研究集中在对产生虹膜代码的二值化方法的更深入的了解上。在本文中,我们从优化的角度说明了虹膜代码的计算。我们证明了传统的虹膜代码是一个优化问题的解决方案,它可以最小化特征值和虹膜代码之间的距离。此外,我们表明,可以通过向该优化问题的目标函数添加项来获得更有效的虹膜代码。我们研究了另外两个客观术语。第一个客观术语利用虹膜代码不同位置的位的空间关系。第二个客观术语减轻了虹膜代码中可靠性较差的位的影响。这两个客观术语可以单独应用,也可以组合使用。我们对具有不同图像质量的四个基准数据集进行了实验。实验结果表明,与通过基于特征值的符号二值化特征值而计算出的传统虹膜代码相比,通过使用两个附加目标项解决优化问题而产生的虹膜代码总体上提高了性能。

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