...
首页> 外文期刊>Multimedia Tools and Applications >Cancelable face and fingerprint recognition based on the 3D jigsaw transform and optical encryption
【24h】

Cancelable face and fingerprint recognition based on the 3D jigsaw transform and optical encryption

机译:基于3D拼图变换和光学加密的可排名的面部和指纹识别

获取原文
获取原文并翻译 | 示例
           

摘要

Biometric systems are widely used now for security applications. Two major problems are encountered in biometric systems: the security problem and the dependence on a single biometric for verification. The security problem arises from the utilization of the original biometrics in databases. So, if these databases are attacked, the biometrics are lost forever. Hence, there is a need to secure original biometrics by keeping them away from utilization in biometric databases. Cancelable biometrics is an emerging security trend in the field of biometric authentication. Cancelable biometric systems depend on the transformation of biometric features into new formats so that users can replace their biometric templates in the same or different systems. In this paper, we present a proposed cancelable face and fingerprint recognition algorithm based on the 3D jigsaw transform and optical encryption. The algorithm adopts the Fractional Fourier Transform (FRFT) in the optical encryption scheme with a single random phase mask. This structure can be implemented all optically with a single lens. The proposed cancelable biometric recognition algorithm employs an optical image encryption scheme that depends on two cascaded stages of 2D-FRFT with separable kernels in both dimensions. The two stages are separated with a random phase mask. A preceding bit plane permutation process is performed on the obtained biometrics prior to the FRFT operation to achieve a high level of security. To validate the proposed algorithm for cancelable biometric recognition, different sets of face and fingerprint images are used. A comparative study is presented between the proposed algorithm and the optical Double Random Phase Encoding (DRPE) algorithm. The simulations results obtained for performance evaluation show that the proposed algorithm is safe, reliable, and feasible. It has good encryption and cancelability that reveal good performance.
机译:自动识别系统现在广泛用于安全应用。生物识别系统中遇到了两个主要问题:安全问题和对单个生物识别进行验证的依赖性。安全问题出现在数据库中原始生物识别性的利用率。因此,如果这些数据库受到攻击,生物识别数将永远丢失。因此,需要通过将它们远离生物识别数据库中的利用来确保原始生物识别性。取消的生物识别是生物识别认证领域的新兴安全趋势。取消的生物识别系统取决于生物识别功能的转换为新格式,以便用户可以在相同或不同的系统中替换其生物识别模板。在本文中,我们介绍了一种基于3D拼接变换和光学加密的提出的取消的面部和指纹识别算法。该算法采用具有单个随机相位掩模的光学加密方案中的分数傅里叶变换(FRFT)。该结构可以用单个镜头光学地实现。所提出的取消的生物识别识别算法采用光学图像加密方案,其取决于两个级别的2D-FRFT的级联级,两种尺寸都具有可分离内核。两个阶段用随机相位掩模分开。在FRFT操作之前对所获得的生物识别性执行先前的比特平面置换过程,以实现高水平的安全性。为了验证所取消的生物识别识别的所提出的算法,使用不同的面部和指纹图像。在所提出的算法和光学双随机相位编码(DRPE)算法之间提出了比较研究。绩效评估获得的模拟结果表明,该算法安全,可靠,可行。它具有良好的加密和取消性,揭示了良好的性能。

著录项

  • 来源
    《Multimedia Tools and Applications》 |2020年第20期|14053-14078|共26页
  • 作者单位

    Department of Microelectronics Electronics Research Institute (ERI) Giza Egypt Department of Electronics and Electrical Communications Engineering Ain Shams University Cairo Egypt;

    Department of Electronics and Electrical Communications Engineering Ain Shams University Cairo Egypt;

    Department of Microelectronics Electronics Research Institute (ERI) Giza Egypt;

    Department of Microelectronics Electronics Research Institute (ERI) Giza Egypt;

    Department of Electronics and Electrical Communications Engineering Ain Shams University Cairo Egypt;

    Department of Electronics and Electrical Communications Engineering Faculty of Electronic Engineering Menoufia University Menouf 32952 Egypt;

    Department of Electronics and Electrical Communications Engineering Faculty of Electronic Engineering Menoufia University Menouf 32952 Egypt;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cancelable biometrics; 3D jigsaw transform; Optical encryption; 2D-FRFT; DRPE;

    机译:取消的生物识别学;3D拼图变换;光学加密;2D-FRFT;DRPE.;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号