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一种基于超混沌映射和线粒体DNA序列的新型彩色图像加密算法。

A Novel Color Image Encryption Algorithm Based on Hyperchaotic Maps and Mitochondrial DNA Sequences.

作者信息

Mohamed Heba G, ElKamchouchi Dalia H, Moussa Karim H

机构信息

Electrical Department, College of Engineering, Princess Nourah Bint Abdulrahman University, Riyadh 11671, Saudi Arabia.

Electrical Department, College of Engineering, Alexandria Higher Institute of Engineering and Technology, Alexandria 21421, Egypt.

出版信息

Entropy (Basel). 2020 Jan 29;22(2):158. doi: 10.3390/e22020158.

Abstract

Multimedia encryption innovation is one of the primary ways of securely and privately guaranteeing the security of media transmission. There are many advantages when utilizing the attributes of chaos, for example, arbitrariness, consistency, ergodicity, and initial condition affectability, for any covert multimedia transmission. Additionally, many more benefits can be introduced with the exceptional space compliance, unique information, and processing capability of real mitochondrial deoxyribonucleic acid (mtDNA). In this article, color image encryption employs a confusion process based on a hybrid chaotic map, first to split each channel of color images into n-clusters; then to create global shuffling over the whole image; and finally, to apply intrapixel shuffling in each cluster, which results in very disordered pixels in the encrypted image. Then, it utilizes the rationale of human mitochondrial genome mtDNA to diffuse the previously confused pixel values. Hypothetical examination and trial results demonstrate that the anticipated scheme exhibits outstanding encryption, as well as successfully opposes chosen/known plain text, statistical, and differential attacks.

摘要

多媒体加密创新是安全且私密地保障媒体传输安全的主要方式之一。对于任何隐蔽的多媒体传输而言,利用混沌的特性(例如任意性、一致性、遍历性和初始条件敏感性)具有诸多优势。此外,真实线粒体脱氧核糖核酸(mtDNA)独特的空间顺应性、独特信息和处理能力还能带来更多益处。在本文中,彩色图像加密采用基于混合混沌映射的置乱过程,首先将彩色图像的每个通道分割为n个簇;然后对整个图像进行全局置乱;最后在每个簇内进行像素内置乱,这使得加密图像中的像素非常混乱。接着,利用人类线粒体基因组mtDNA的原理来扩散先前置乱的像素值。理论检验和实验结果表明,预期方案展现出出色的加密效果,并且成功抵御了选择明文/已知明文、统计和差分攻击。

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