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A novel key generation scheme for biometric cryptosystems using fingerprint minutiae

机译:使用指纹细节的生物特征密码系统的新型密钥生成方案

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In this paper, a novel method of generating can-celable cryptographic key using local features from fingerprint minutiae points has been proposed. Local features from input fingerprint image are determined and minutiae points are extracted using Gabor filter. Then a template matrix is generated from extracted minutiae points. Two directed acyclic graphs (DAG) are generated from the template matrix taking minutiae coordinates as edges. Binary values are assigned to each edge based on local features of the minutiae points-orientation, frequency and phase. Then for each DAG, the proposed algorithm selects each node as source and determines the longest reachable path, traverses the path and generates a binary string. Thus, two binary strings are generated from the two DAGs. Finally the proposed algorithm performs a simple rotation and combination operation on the two strings and generates four cryptographic keys. We have performed experiments on existing benchmark fingerprint databases and based on security analysis of our method we conclude that our proposed method is a simple and efficient method that generates four cancelable cryptographic keys and the proposed process has very strong irreversible property.
机译:本文提出了一种利用指纹细节点的局部特征生成可取消密码密钥的新方法。确定来自输入指纹图像的局部特征,并使用Gabor滤波器提取细节点。然后从提取的细节点生成模板矩阵。从模板矩阵以细节坐标为边生成两个有向无环图(DAG)。根据细节点的方向,频率和相位的局部特征,将二进制值分配给每个边缘。然后针对每个DAG,所提出的算法选择每个节点作为源,并确定最长的可达路径,遍历该路径并生成一个二进制字符串。因此,从两个DAG生成了两个二进制字符串。最后,所提出的算法对两个字符串执行简单的旋转和组合操作,并生成四个密码密钥。我们已经在现有基准指纹数据库上进行了实验,并且基于对我们方法的安全性分析,得出的结论是,我们提出的方法是一种简单有效的方法,可以生成四个可取消的加密密钥,并且该方法具有非常强的不可逆性。

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