Biometric data encryption using 3-D chaotic system

Garima Mehta, M. Dutta, Pyung SooKim
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引用次数: 4

Abstract

Biometrics is gaining a lot of popularity as a tool to authenticate an individual using the unique biometric attributes. The exchange of biometric data over unsecured network channels makes it vulnerable to breach of security by illegal access. To overcome this challenge this paper proposes an efficient and secured chaos based encryption scheme having exceptionally desirable complex behavior which is difficult to predict and analyze. In this paper for shuffling the pixels of biometric data Arnold cat map is used and diffusion is also introduced after scrambling to make the encryption process non invertible. This method uses 3-D Chen chaotic system to change the statistical properties of biometric data so as to resist statistical attacks. Experimental results also show the resistant of proposed algorithm against perceptual and brute force attacks makes it suitable for transmission of biometric data over open and shared networks.
基于三维混沌系统的生物特征数据加密
作为一种使用独特的生物特征属性来验证个人身份的工具,生物识别技术正越来越受欢迎。在不安全的网络通道上交换生物特征数据使其容易受到非法访问的破坏。为了克服这一挑战,本文提出了一种高效、安全的混沌加密方案,该方案具有非常理想的复杂行为,难以预测和分析。本文采用Arnold猫图对生物特征数据的像素进行洗牌,并在置乱后引入扩散,使加密过程不可逆。该方法利用三维陈混沌系统改变生物特征数据的统计特性,从而抵抗统计攻击。实验结果还表明,该算法具有抵抗感知攻击和暴力破解攻击的能力,适合在开放和共享网络上传输生物特征数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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