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Improved security in the genetic algorithm-based image steganography scheme using Hilbert space-filling curve

机译:利用希尔伯特空间填充曲线提高基于遗传算法的图像隐写术方案的安全性

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This paper presents the security analysis of a recently proposed data hiding scheme by Kanan and Nazeri [A novel image steganography scheme with high embedding capacity and tunable visual image quality based on a genetic algorithm. Expert Syst Appl. 2014;41(14):6123-6130]. Security of the scheme depends upon a secret keychromosome constructed using a genetic algorithm. The key specifies offsets and patterns for data embedding. By performing the key-sensitivity analysis and exploiting image pixel correlation, it is shown in the present paper that the secret data can be easily revealed. Simulation results demonstrate that just 11 bits out of the 27-bit secret key are sufficient to reveal the data. To overcome the problem, an improvement is suggested in the data embedding pattern that demonstrates high data security. Bitwise analysis of the secret key used in the modified approach exhibits high sensitivity to change in the key.
机译:本文介绍了Kanan和Nazeri最近提出的数据隐藏方案的安全分析[基于遗传算法的高嵌入容量和可调视觉图像质量的新型图像隐写方案。专家Syst Appl。 2014; 41(14):6123-6130]。方案的安全性取决于使用遗传算法构建的秘密键染色体。该密钥指定数据嵌入的偏移和模式。通过执行键灵敏度分析和利用图像像素相关性,在本文中示出了秘密数据可以容易地揭示。仿真结果表明,27位密钥中只有11位足以揭示数据。为了克服这个问题,在数据嵌入模式中提出了一种改进,该模式展示了高数据安全性。修改方法中使用的秘密密钥的按位分析表现出高度灵敏度,以改变键。

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