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Secure Minutiae-Based Fingerprint Templates Using Random Triangle Hashing

机译:使用随机三角形哈希安全地基于细节的指纹模板

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Due to privacy concern on the widespread use of biometric authentication systems, biometric template protection has gained great attention in the biometric research recently. It is a challenging task to design a biometric template protection scheme which is anonymous, revocable and noninvertible while maintaining acceptable performance. Many methods have been proposed to resolve this problem, and cancelable biometrics is one of them. In this paper, we propose a scheme coined as Random Triangle Hashing which follows the concept of cancelable biometrics in the fingerprint domain. In this method, realignment of fingerprints is not required as all the minutiae are translated into a pre-defined 2 dimensional space based on a reference minutia. After that, the proposed Random Triangle hashing method is used to enforce the one-way property (non-invertibility) of the biometric template. The proposed method is resistant to minor translation error and rotation distortion. Finally, the hash vectors are converted into bit-strings to be stored in the database. The proposed method is evaluated using the public database FVC2004 DB1. An EER of less than 1% is achieved by using the proposed method.
机译:由于对生物识别系统广泛使用的隐私保护,生物模板保护在近来的生物研究中得到了极大的关注。设计一种匿名,可撤销和不可逆的同时保持可接受性能的生物特征模板保护方案是一项艰巨的任务。已经提出了许多方法来解决该问题,并且可取消的生物特征识别是其中之一。在本文中,我们提出了一种称为随机三角哈希的方案,该方案遵循指纹域中可取消生物识别的概念。在此方法中,不需要指纹重新对齐,因为所有细节都基于参考细节被转换为预定义的二维空间。之后,所提出的随机三角形散列方法用于强制执行生物特征模板的单向属性(不可逆性)。所提出的方法具有较小的平移误差和旋转失真。最后,将哈希向量转换为位串以存储在数据库中。使用公共数据库FVC2004 DB1对提出的方法进行评估。通过使用所提出的方法,EER小于1%。

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