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An Analysis of IrisCode

机译:虹膜代码分析

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摘要

IrisCode is an iris recognition algorithm developed in 1993 and continuously improved by Daugman. It has been extensively applied in commercial iris recognition systems. IrisCode representing an iris based on coarse phase has a number of properties including rapid matching, binomial impostor distribution and a predictable false acceptance rate. Because of its successful applications and these properties, many similar coding methods have been developed for iris and palmprint identification. However, we lack a detailed analysis of IrisCode. The aim of this paper is to provide such an analysis as a way of better understanding IrisCode, extending the coarse phase representation to a precise phase representation, and uncovering the relationship between IrisCode and other coding methods. Our analysis demonstrates that IrisCode is a clustering algorithm with four prototypes; the locus of a Gabor function is a 2-D ellipse with respect to a phase parameter and can be approximated by a circle in many cases; Gabor function can be considered as a phase-steerable filter and the bitwise hamming distance can be regarded as a bitwise phase distance. We also discuss the theoretical foundation of the impostor binomial distribution. We use this analysis to develop a precise phase representation which can enhance accuracy. Finally, we relate IrisCode and other coding methods.
机译:IrisCode是一种虹膜识别算法,于1993年开发,并由Daugman不断改进。它已被广泛应用于商业虹膜识别系统。代表基于粗糙相位的虹膜的IrisCode具有许多属性,包括快速匹配,二项式冒名顶替者分布和可预测的错误接受率。由于其成功的应用和这些特性,已开发出许多用于虹膜和掌纹识别的类似编码方法。但是,我们缺少对IrisCode的详细分析。本文的目的是提供一种分析,以更好地理解IrisCode,将粗略相位表示扩展为精确的相位表示,并揭示IrisCode与其他编码方法之间的关系。我们的分析表明,IrisCode是具有四个原型的聚类算法。 Gabor函数的轨迹相对于相位参数是2D椭圆,在许多情况下可以用圆近似。 Gabor函数可被视为相位可控滤波器,按位汉明距离可被视为按位相位距离。我们还讨论了冒名顶替二项分布的理论基础。我们使用此分析来开发可以提高精度的精确相位表示。最后,我们将IrisCode和其他编码方法联系起来。

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