虹膜归一化的生物力学方法

Inmaculada Tomeo-Reyes, A. Ross, A. Clark, V. Chandran
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引用次数: 22

摘要

虹膜纹理的丰富性及其在个体之间的可变性使其成为一种有用的个人身份验证生物特征。经典虹膜识别的关键阶段之一是归一化过程,将环形虹膜区域映射到无量纲伪极坐标系。这一过程产生了一个矩形结构,可以用来补偿尺度和瞳孔大小的差异。文献中的虹膜识别方法在进行虹膜归一化时,大多采用径向和角向的线性采样。本文利用虹膜的生物力学模型定义了一种新的非线性归一化方案,提高了不同瞳孔扩张程度下虹膜的识别精度。所提出的生物力学模型用于预测虹膜中任意点在给定扩张水平下的径向位移,并将该信息纳入归一化过程。在WVU瞳孔光反射数据库(WVU- plr)上的实验结果表明了该方法的有效性,特别是在匹配瞳孔大小差异较大的虹膜图像时。
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A biomechanical approach to iris normalization
The richness of the iris texture and its variability across individuals make it a useful biometric trait for personal authentication. One of the key stages in classical iris recognition is the normalization process, where the annular iris region is mapped to a dimensionless pseudo-polar coordinate system. This process results in a rectangular structure that can be used to compensate for differences in scale and variations in pupil size. Most iris recognition methods in the literature adopt linear sampling in the radial and angular directions when performing iris normalization. In this paper, a biomechanical model of the iris is used to define a novel nonlinear normalization scheme that improves iris recognition accuracy under different degrees of pupil dilation. The proposed biomechanical model is used to predict the radial displacement of any point in the iris at a given dilation level, and this information is incorporated in the normalization process. Experimental results on the WVU pupil light reflex database (WVU-PLR) indicate the efficacy of the proposed technique, especially when matching iris images with large differences in pupil size.
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