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Randomized Pixel Selection for Enhancing LSB Algorithm Security against Brute-Force Attack

机译:随机像素选择可增强针对强力攻击的LSB算法安全性

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Steganography is the science of concealing a secret message by embedding it into innocent carriers such as text, audio, images, etc. It plays a crucial role in a broad range of security applications such as securing message exchange, user authentication and copyrighting. One of the most effortless and widely-used techniques is the age-old Least Significant Bits (LSB) algorithm, which can be implemented in both transformative and spatial domains. The advantage of this technique is that it can be used with any form of digital media. However, operating pixels on a sequential basis leaves the algorithm susceptible to many steganalysis techniques. Consequently, it is easy for the attacker to recognize the inclusion of a secret message within the media and thus to proceed with the extraction. Therefore, it is necessary to provide an extra layer of security to protect the data. In this study, we propose a random selection of pixels that hold a secret message based on an integer solution of the elliptic curve equation. In addition, we have embedded noise bits into the unused pixels to make the steganalysis process more difficult. The attacker not only needs to guess which pixels (out of all pixels in the image) have been selected to carry the secret, but also must arrange them in the correct order. The results show that the proposed algorithm achieves a significant security improvement in comparison to standard LSB when it comes to defending against brute-force attacks with a subordinate effect of image quality.
机译:隐秘术是一种通过将秘密消息嵌入文本,音频,图像等无害载体中来隐藏秘密消息的科学。它在广泛的安全应用程序(例如保护消息交换,用户身份验证和版权)中扮演着至关重要的角色。最早的最低有效位(LSB)算法是最省力和广泛使用的技术之一,该算法可以在变换域和空间域中实现。该技术的优点是可以与任何形式的数字媒体一起使用。但是,按顺序操作像素会使算法容易受到许多隐写分析技术的影响。因此,攻击者很容易识别出秘密消息已包含在媒体中,从而可以继续进行提取。因此,有必要提供额外的安全层来保护数据。在这项研究中,我们建议根据椭圆曲线方程的整数解对包含秘密信息的像素进行随机选择。此外,我们将噪声位嵌入未使用的像素中,从而使隐写分析过程更加困难。攻击者不仅需要猜测已经选择了哪个像素(图像中所有像素中的哪个)来携带机密,而且还必须以正确的顺序排列它们。结果表明,与标准的LSB相比,所提出的算法在抵御暴力攻击和图像质量的次要影响时,具有显着的安全性改进。

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