Parvees M Y Mohamed, Samath J Abdul, Bose B Parameswaran
Research and Development Centre, Bharathiar University, Coimbatore, 641046, India.
Department of Computer Science, Government Arts College, Udumalpet, 642126, India.
J Med Syst. 2016 Nov;40(11):232. doi: 10.1007/s10916-016-0611-5. Epub 2016 Sep 21.
In this paper, a cryptosystem is proposed to encrypt 16-bit monochrome DICOM image using enhanced chaotic economic map. A new enhanced chaotic economic map (ECEM) is designed from the chaotic economic map which has better bifurcation nature and positive Lyapunov exponent values. In order to improve the sternness of the encryption algorithm, the enhanced chaotic map is employed to generate the pixel permutation, masking, and swapping sequences. The substitution operation is introduced in-between the standard permutation and diffusion operations. The robustness of the proposed image encryption algorithm is measured by various analyses such as histogram, key sensitivity, key space, number of pixel change rate (NPCR), unified average change intensity (UACI), information entropy and correlation coefficient. The results of the security analyses are compared with existing algorithms to validate that the proposed algorithm is better in terms of larger key space to resist brute force attacks and other common attacks on encryption.
本文提出了一种密码系统,用于使用增强型混沌经济映射对16位单色DICOM图像进行加密。从具有更好分岔特性和正Lyapunov指数值的混沌经济映射设计了一种新的增强型混沌经济映射(ECEM)。为了提高加密算法的严格性,采用增强型混沌映射生成像素置换、掩码和交换序列。在标准置换和扩散操作之间引入了替换操作。通过直方图、密钥敏感性、密钥空间、像素变化率(NPCR)、统一平均变化强度(UACI)、信息熵和相关系数等各种分析来衡量所提出的图像加密算法的鲁棒性。将安全分析结果与现有算法进行比较,以验证所提出的算法在更大的密钥空间方面表现更好,能够抵御暴力攻击和其他常见的加密攻击。