改进的深度隐藏/提取算法,提高隐藏信息的有效载荷能力和安全级别

Marwa Ahmad, Nameer N. El-Emam, A. F. Al-Azawi
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引用次数: 2

摘要

隐写算法已成为防止非法用户获取机密数据的重要技术。本文提出了一种改进的深度隐藏/提取算法(IDHEA)来隐藏彩色图像中的秘密信息。该算法在提高有效载荷能力和降低时间复杂度方面得到了应用。改进的LSB (MLSB)基于在封面图像上随机传播秘密数据,并被提议替换每字节(Nbpb)的一些位,最多4位,以增加有效载荷容量并使隐藏数据难以访问。IDHEA算法的层数是随机指定的;每一层使用一张彩色图像,从一层到下一层,图像大小被扩展,该算法从一个小尺寸的封面图像开始,并根据放大比例在下一层逐渐或突然增加图像的大小。基于运行长度编码算法和Gzip的无损图像压缩在下一层启用隐藏的数据大小,并在每一层引入使用高级加密标准算法(AES)的数据加密,以提高安全级别。因此,所提出的IDHEA算法的有效性已经在最后一层进行了测量,并且所提出的隐藏算法的性能已经通过许多统计和视觉指标在嵌入容量和不可感知性方面进行了检验。已将提议的方法与以前的工作进行了比较;结果表明,预期的方法比先前修改的LSB算法更好,并且它可以通过使用检测误差(PE)来对抗视觉和统计攻击,并取得了出色的性能。此外,结果证实,具有高不可感知性的隐写图像甚至达到了大的有效载荷能力,取代了每像素12位(12-bpp)。测试结果表明,该算法能够有效地嵌入秘密数据,并且具有较好的视觉质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improved Deep Hiding/Extraction Algorithm to Enhance the Payload Capacity and Security Level of Hidden Information
Steganography algorithms have become a significant technique for preventing illegal users from obtaining secret data. In this paper, a deep hiding/extraction algorithm has been improved (IDHEA) to hide a secret message in colour images. The proposed algorithm has been applied to enhance the payload capacity and reduce the time complexity. Modified LSB (MLSB) is based on disseminating secret data randomly on a cover-image and has been proposed to replace a number of bits per byte (Nbpb), up to 4 bits, to increase payload capacity and make it difficult to access the hiding data. The number of levels of the IDHEA algorithm has been specified randomly; each level uses a colour image, and from one level to the next, the image size is expanded, where this algorithm starts with a small size of a cover-image and increases the size of the image gradually or suddenly at the next level, according to an enlargement ratio. Lossless image compression based on the run-length encoding algorithm and Gzip has been applied to enable the size of the data that is hiding at the next level, and data encryption using the Advanced Encryption Standard algorithm (AES) has been introduced at each level to enhance the security level. Thus, the effectiveness of the proposed IDHEA algorithm has been measured at the last level, and the performance of the proposed hiding algorithm has been checked by many statistical and visual measures in terms of the embedding capacity and imperceptibility. Comparisons between the proposed approach and previous work have been implemented; it appears that the intended approach is better than the previously modified LSB algorithms, and it works against visual and statistical attacks with excellent performance achieved by using the detection error (PE). Furthermore, the results confirmed that the stego-image with high imperceptibility has reached even a payload capacity that is large and replaces twelve bits per pixel (12-bpp). Moreover, testing is confirmed in that the proposed algorithm can embed secret data efficiently with better visual quality.
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