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A Novel RGB Image Steganography Using Simulated Annealing and LCG via LSB

机译:一种新颖的RGB图像隐写,通过LSB使用模拟退火和LCG

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The enormous prevalence of transferring official confidential digital documents via the Internet shows the urgent need to deliver confidential messages to the recipient without letting any unauthorized person to know contents of the secret messages or detect there existence . Several Steganography techniques such as the least significant Bit (LSB), Secure Cover Selection (SCS), Discrete Cosine Transform (DCT) and Palette Based (PB) were applied to prevent any intruder from analyzing and getting the secret transferred message. The utilized steganography methods should defiance the challenges of Steganalysis techniques in term of analysis and detection. This paper presents a novel and robust framework for color image steganography that combines Linear Congruential Generator (LCG), simulated annealing (SA), Cesar cryptography and LSB substitution method in one system in order to reduce the objection of Steganalysis and deliver data securely to their destination. SA with the support of LCG finds out the optimal minimum sniffing path inside a cover color image (RGB) then the confidential message will be encrypt and embedded within the RGB image path as a host medium by using Cesar and LSB procedures. Embedding and extraction processes of secret message require a common knowledge between sender and receiver; that knowledge are represented by SA initialization parameters, LCG seed, Cesar key agreement and secret message length. Steganalysis intruder will not understand or detect the secret message inside the host image without the correct knowledge about the manipulation process. The constructed system satisfies the main requirements of image steganography in term of robustness against confidential message extraction, high quality visual appearance, little mean square error (MSE) and high peak signal noise ratio (PSNR).
机译:通过互联网转移官方机密数字文件的巨大普遍性显示迫切需要向收件人提供机密信息,而不让任何未经授权的人知道秘密信息的内容或检测存在。应用诸如最低有效位(LSB),安全覆盖选择(SCS),离散余弦变换(DCT)和基于调色板(PB)的几种定位器技术,以防止任何入侵者分析并获取秘密转移的消息。利用的隐写法方法应在分析和检测期间蔑视塞加分析技术的挑战。本文提出了一种新颖且强大的彩色图像隐写框架,将线性总体发电机(LCG),模拟退火(SA),CESAR加密(SA),CESAR加密(SA),CESAR加密(SA),CESAR加密和LSB替换方法组合在一起,以减少隐草分析的反对,并将数据安全地提供给他们的数据目的地。通过LCG的支持,SA在盖子彩色图像(RGB)内的最佳最小嗅探路径中,然后通过使用CESAR和LSB程序将收取机密信息作为主机介质。嵌入和提取秘密消息的过程需要发件人和接收者之间的共同知识;该知识由SA初始化参数,LCG种子,CESAR密钥协议和秘密消息长度表示。隐性分析入侵者将不理解或检测主机图像内的秘密消息,而无需正确了解操作过程。构造的系统满足图像隐写的主要要求,其稳健性反对机密信息提取,高质量的视觉外观,均匀的平方误差(MSE)和高峰信号噪声比(PSNR)。

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