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A Secure Steganographic Algorithm Based on Cellular Automata Using Fibonacci Representation

机译:基于细胞自动机的斐波那契表示法安全隐写算法

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This study proposes a steganographic technique based on Cellular Automata using Fibonacci representation. The pixel's color component is decomposed into Fibonacci domain to extend more available bit-planes which can be used in data-hiding. In order to increase the robustness of hidden data against modification attacks, the secret bits are embedded into a higher LSB layer. Nevertheless, the embedding secret bit in the higher LSB layer causes more distortion to cover-image. An adaptive adjustment was applied to minimize the distortion of the cover - image. The security of hidden message is enhanced by employing the Game of life, a cellular automaton, to generate the used key stream for encryption and image pixel selection. By employing the adaptive adjustment, every pixel in the image can be used in the embedding process. Therefore, the capacity of the embedding secret message is the same as classical LSB algorithm. Experimental results show that the existence of hidden message cannot be figured out by the visual or statistically attack and the robustness of hidden data in the stego-image is enhanced.
机译:本研究提出了一种基于使用Fibonacci表示的基于蜂窝自动机的隐写技术。像素的颜色分量被分解成FibonAcci域以扩展可用于数据隐藏的更多可用位平面。为了增加隐藏数据的鲁棒性反对修改攻击,秘密比特嵌入到更高的LSB层中。然而,较高LSB层中的嵌入秘密位导致覆盖图像的更显失真。应用自适应调整以最小化盖子的变形。通过使用生命游戏,蜂窝自动机器来增强隐藏消息的安全性,以生成用于加密和图像像素选择的使用过的密钥流。通过采用自适应调整,可以在嵌入过程中使用图像中的每个像素。因此,嵌入秘密消息的容量与经典LSB算法相同。实验结果表明,隐藏消息的存在不能通过视觉或统计攻击(STEGO图像中隐藏数据的稳健性)被提高。

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