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Block mode image encryption technique using two-fold operations based on chaos, MD5 and DNA rules

机译:块模式图像加密技术使用基于混沌,MD5和DNA规则的双折操作

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An innovative image encryption scheme named Two-Fold confusion operation is proposed in the block mode. A gray image is permuted using Logistic map and then Most and Least Significant parts of the image are separated known as MSB and LSB. These LSB and MSB parts are transformed into separate 1-Dimensional arrays and are divided into non-overlapped blocks of fixed size. These blocks are then encoded into DNA bases where each block of LSB and MSB gets a different DNA rule selected dynamically using Chen's hyper chaotic sequence. The innovation in this scheme is that each selective part of digital image is confused with different operations in DNA algebraic mode: Exclusive-OR for MSB blocks and addition operation for LSB blocks in the first phase. In 2nd phase of confusion, operations are exchanged for LSB and MSB. At last, confused LSB blocks are combined randomly with confused MSB blocks to form blocks of image pixels. These blocks of pixels are decoded back to digital domain by different DNA rules using chaotic pseudo-random numbers. The secret keys for chaotic maps are made dependent on MD5 digest of plain image to avoid launch of chose-plaintext attack. The simulation results show that NPCR score is 99.60%, UACI score33.40% and Chi-square is 255, hence proposed system is highly robust against statistical and differential attacks.
机译:在块模式中提出了一种名为双倍混淆操作的创新图像加密方案。使用Logistic Map允许灰度图像,然后将图像的大多数和最低有效部分称为MSB和LSB。这些LSB和MSB部件被转换成单独的1维数组,并分为固定尺寸的非重叠块。然后将这些嵌段编码成DNA碱基,其中LSB和MSB的每个块获得使用Chen的超混沌序列动态选择的不同DNA规则。该方案中的创新是数字图像的每个选择性部分与DNA代数模式中的不同操作混淆:用于第一阶段中的LSB块的非专用或用于MSB块的添加操作。在第二阶段的混乱中,对LSB和MSB交换操作。最后,困惑的LSB块随机组合使用困惑的MSB块来形成图像像素的块。通过使用混沌伪随机数,通过不同的DNA规则解码回到数字域的这些像素块。混沌映射的秘密密钥取决于普通图像的MD5摘要,以避免发射被选择的纯攻击。仿真结果表明,NPCR得分> 99.60%,UACI得分> 33.40%和Chi-Square是<255,因此提出的系统对抗统计和差异攻击非常强大。

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