Non-Contact Fingerprint Template Protection Using DFT Combined Random Projection

Boris Jerson Zannou, Tahirou Djara, A. Vianou
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Abstract

In view of the different dangers to which users of contactless biometric systems are exposed, we have developed a contactless secure revocable model based on random projection and DFT (Discret Fourier Tansformation) to enhance contactless fingerprint authentication. Two matrices emerge, namely that corresponding to the terminations and that corresponding to the bifurcations. These matrices are then transformed in a first time thanks to the random projection. In a second time we apply to them the Discret Fourier Transformation called the DFT.This proposed non-contact revocable fingerprint model meets the requirements of revocability, diversity, security and non-reversibility. The evaluation of our model through its results gives the most promising results compared to those existing. The equal error rate (EER) obtained are respectively equal to 0.19% for FVC2002 DB1, 1% for FVC2002 DB2, 4.29% for FVC2002 DB3 and 9.01% for FVC2004 DB2.
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基于DFT组合随机投影的非接触指纹模板保护
针对非接触式生物识别系统使用者可能面临的不同危险,我们开发了一种基于随机投影和离散傅立叶变换(DFT)的非接触式安全可撤销模型,以增强非接触式指纹认证。出现了两个矩阵,即对应于终止的矩阵和对应于分叉的矩阵。然后,由于随机投影,这些矩阵在第一时间被变换。第二次我们对它们应用离散傅里叶变换称为DFT。提出的非接触可撤销指纹模型满足可撤销性、多样性、安全性和不可逆性的要求。通过结果对我们的模型进行评价,得出了与现有模型相比最有希望的结果。得到的等错误率(EER)分别为FVC2002 DB1 0.19%、FVC2002 DB2 1%、FVC2002 DB3 4.29%和FVC2004 DB2 9.01%。
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