Wang Xiaogang, Zhao Daomu
School of Sciences, Zhejiang A & F University, Linan, China.
Appl Opt. 2011 Dec 20;50(36):6645-51. doi: 10.1364/AO.50.006645.
The asymmetric cryptosystem, which is based on phase-truncated Fourier transforms (PTFTs), can break the linearity of conventional systems. However, it has been proven to be vulnerable to a specific attack based on iterative Fourier transforms when the two random phase masks are used as public keys to encrypt different plaintexts. An improvement from the asymmetric cryptosystem may be taken by relocating the amplitude values in the output plane. In this paper, two different methods are adopted to realize the amplitude modulation of the output image. The first one is to extend the PTFT-based asymmetrical cryptosystem into the anamorphic fractional Fourier transform domain directly, and the second is to add an amplitude mask in the Fourier plane of the encryption scheme. Some numerical simulations are presented to prove the good performance of the proposed cryptosystems.
基于相位截断傅里叶变换(PTFT)的非对称密码系统能够打破传统系统的线性特性。然而,当使用两个随机相位掩模作为公钥对不同明文进行加密时,已证明该系统容易受到基于迭代傅里叶变换的特定攻击。通过重新定位输出平面中的幅度值,可以对非对称密码系统进行改进。本文采用两种不同方法来实现输出图像的幅度调制。第一种方法是将基于PTFT的非对称密码系统直接扩展到变形分数傅里叶变换域,第二种方法是在加密方案的傅里叶平面中添加一个幅度掩模。给出了一些数值模拟结果以证明所提出的密码系统具有良好的性能。