Image Encryption: A Random Selection Approach

Sundararaman Rajagopalan, L. Chandrasekaran, Amirtharajan Rengarajan, Sivaraman Rethinam, S. Arumugham, Mohan Kandhaiya
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Abstract

Digital data is a fundamental source of multimedia platform where image communication is a substantial part of it. Through image communication, information is transmitted and received on network in various fields like armed forces, military, healthcare, entertainment, and many more. To protect information, security architectures are necessary. This work proposes an enhanced method of gray scale image encryption where chaotic selection of encryption algorithm takes the priority. Confusion and diffusion is performed with four pseudo random sequence generators namely Chaotic logistic map, chaotic tent map, Linear Feedback Shift Register (LFSR) and combined chaotic map. Confusion phase is a constant operation in which logistic map generated random sequences are used to scramble the image. In diffusion phase, chaotic selection of random sequence generator is accomplished by a sum of four digits random number generated using logistic map. Then diffusion is performed by XORing the scrambled image with generated random sequences produced from respective generator. This image encryption scheme is designed using python 2.7 and validated by performing entropy, correlation, histogram, differential, encryption quality and NIST test analyses.
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图像加密:一种随机选择方法
数字数据是多媒体平台的基本来源,图像通信是多媒体平台的重要组成部分。通过图像通信,军队、军事、医疗、娱乐等各个领域的信息在网络上传输和接收。为了保护信息,安全架构是必要的。本文提出了一种以混沌选择加密算法为重点的灰度图像加密增强方法。采用混沌逻辑映射、混沌帐篷映射、线性反馈移位寄存器(LFSR)和组合混沌映射四种伪随机序列发生器进行混淆和扩散。混淆阶段是使用逻辑映射生成的随机序列对图像进行搅乱的恒定操作。在扩散阶段,随机序列发生器的混沌选择是由逻辑映射生成的四位随机数和来完成的。然后将打乱后的图像与各自生成器生成的随机序列进行XORing进行扩散。该图像加密方案使用python 2.7进行设计,并通过熵、相关性、直方图、差分、加密质量和NIST测试分析进行验证。
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