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Color image DNA encryption using mRNA properties and non-adjacent coupled map lattices

机译:使用MRNA属性和非相邻耦合地图格子进行彩色图像DNA加密

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摘要

This paper proposes a novel algorithm for encrypting color images. The innovation in this study is the use of messenger ribonucleic acid (mRNA) encoding to import into Deoxyribonucleic acid (DNA) encoding. For permutation of the plain image bits, we use Arnold's Cat Map at the bit-level. Then, using Non-Adjacent Coupled Map Lattices (NCML), we apply diffusion operations to the permuted color channels. We also provide the upgrade of the diffusion phase with DNA encoding. In the proposed algorithm, the choices are random depending on the secret key, which is implemented using a simple logistic map. Hashing the string entered by the user, the secret key, parameters, and initial values are generated by the Double MD5 method. The results of tests and security analysis showed that the results of encryption with this scheme are effective, and the key space is large enough to withstand common attacks.
机译:本文提出了一种用于加密彩色图像的新算法。本研究的创新是使用编码的信使核糖核酸(mRNA)进口到脱氧核糖核酸(DNA)编码中。对于纯图像位的置换,我们在比特级使用Arnold的Cat Map。然后,使用非相邻的耦合地图格(NCML),我们将扩散操作应用于允许的颜色通道。我们还通过DNA编码提供扩散阶段的升级。在所提出的算法中,取决于秘密密钥的选择是随机的,这是使用简单的逻辑图来实现的。散列用户输入的字符串,秘密密钥,参数和初始值由双MD5方法生成。测试和安全分析结果表明,使用该方案的加密结果是有效的,并且关键空间足以承受常见的攻击。

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