一种基于SoPC混沌加密的指纹保护新方法

M. S. Azzaz, N. Aissaoui, C. Tanougast
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引用次数: 3

摘要

本文提出了一种基于混沌加密技术和可编程芯片系统SoPC的指纹模板防攻击设计方法。该方法基于基于Xilinx FPGA平台的硬件/软件(HW/SW)协同设计方法。所提出的流密码算法是基于洛伦兹系统的混沌序列。仿真和实验结果清楚地表明,所提出的保护生物特征认证系统的方法在安全性和性能要求之间提供了良好的权衡,在效率和成本方面。因此,该系统可以集成到一个实时安全访问控制系统中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Fingerprint Protection Approach based on SoPC Chaotic Encryption
In this paper, a new design approach based on chaotic encryption technique and System on Programmable Chip SoPC to protect fingerprint templates against some attacks is presented. This approach is based on the co-design methodology hardware/software (HW/SW) performed by using Xilinx FPGA platform. The proposed stream cipher algorithm is based on chaotic sequences of the Lorenz system. Simulation and experimental results clearly demonstrate that the proposed approach for protecting biometric authentication system provide a good trade-off between security and performance requirements in terms of efficiency and cost. This system could therefore be integrated into a real time secure access control system.
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