高效的基于生物特征的指纹加密

Neyire Deniz Sarier
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引用次数: 3

摘要

在本文中,我们描述了同时考虑两个距离度量的基于生物身份的加密(IBE)的第一个通用结构。目前的模糊/生物特征IBE协议考虑集合重叠度量或欧几里得距离。然而,生物特征模板的相似性度量可能与理论工作中考虑的相似性度量有很大不同。例如,指纹模板通常由一组细节组成,如果一个模板中超过一定数量的细节在另一个模板中接近不同的细节,则认为两个模板相似。在这种情况下,相似性度量必须同时考虑欧几里得距离和集差。为了实现这一特性,我们的通用结构基于两个不同的生物识别IBE系统编码相同的消息。具体来说,我们结合了模糊ibe类型方案和最近引入的基于距离的加密(DBE)方案,在公共参数、密文和私钥大小方面的开销最小。此外,我们还描述了一种高效的生物特征IBE方案,称为ordFIBE,该方案仅限于可以表示为有序/分组特征集的生物特征。最后,我们实例化了基于ordFIBE和[1]的DBE的新结构,它们共享相同的设置阶段,特别是公共参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient biometric-based Encryption for fingerprints
In this paper, we describe the first generic construction for biometric Identity Based Encryption (IBE) considering two distance measures at the same time. Current protocols for fuzzy/biometric IBE consider either set overlap metric or Euclidean distance. However, the similarity measures for biometric templates can be quite different from those considered in theoretical works. For instance, a fingerprint template usually consists of a set of minutiae, and two templates are considered as similar if more than a certain number of minutiae in one template are near distinct minutiae in the other. In this case, the similarity measure has to consider both Euclidean distance and set difference at the same time. To achieve this property, our generic construction is based on two different biometric IBE systems encoding the same message. Specifically, we combine a fuzzy IBE-type scheme and the recently introduced Distance Based Encryption (DBE) scheme with minimum overhead in terms of public parameters, ciphertext and private key size. Also, we describe an efficient biometric IBE scheme denoted as ordFIBE, which is restricted for biometrics that can be represented as an ordered/grouped set of features. Finally, we instantiate the new construction based on ordFIBE and DBE of [1], which share the same setup phase, in particular, common public parameters.
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