论文标题
通过利用秘密图像和覆盖图像之间的相似性来提高数字隐志的嵌入效率
Improving embedding efficiency for digital steganography by exploiting similarities between secret and cover images
论文作者
论文摘要
数字隐志正在成为保护各种应用中敏感通信(例如恐怖主义)预防(恐怖主义)的常见工具,在这些应用程序中,执法人员需要远程比较在犯罪现场捕获的面部图像与已知罪犯的面孔数据库(犯罪嫌疑人);在敌对环境(情况)中交换军事地图或监视视频;在存储或交换患者医学图像时,保留医疗保健系统的隐私(记录);并防止未经授权的用户非法访问银行客户帐户(记录)。现有的数字隐志计划将秘密图像嵌入封面图像文件中倾向于不利用秘密图像位的各种冗余,以应对嵌入能力,符合图像质量和不可检索的各种相互矛盾的要求。本文关注的是开发创新的图像程序和数据隐藏方案,这些方案是利用秘密图像位流与封面图像LSB平面之间相似性的相似之处。这将在两个新的步骤中实现,涉及在嵌入之前操纵秘密图像和封面图像,以在秘密图像位基流和封面图像LSB平面上达到更高的0:1比率。上述两个步骤策略已被利用用于使用位平面映射技术,而不是比特平面替换,以使每个封面像素可用于秘密嵌入。本文将表明,该策略会产生对畸变,高嵌入效率的最小变形,相当良好的对象形象的质量和鲁棒性,可针对3种众所周知的靶向坚定分析工具。
Digital steganography is becoming a common tool for protecting sensitive communications in various applications such as crime(terrorism) prevention whereby law enforcing personals need to remotely compare facial images captured at the scene of crime with faces databases of known criminals(suspects); exchanging military maps or surveillance video in hostile environment(situations); privacy preserving in the healthcare systems when storing or exchanging patient medical images(records); and prevent bank customers accounts(records) from being accessed illegally by unauthorized users. Existing digital steganography schemes for embedding secret images in cover image files tend not to exploit various redundancies in the secret image bit-stream to deal with the various conflicting requirements on embedding capacity, stego-image quality, and un-detectibility. This paper is concerned with the development of innovative image procedures and data hiding schemes that exploit, as well as increase, similarities between secret image bit-stream and the cover image LSB plane. This will be achieved in two novel steps involving manipulating both the secret and the cover images,prior to embedding, to achieve higher 0:1 ratio in both the secret image bit-stream and the cover image LSB plane. The above two steps strategy has been exploited to use a bit-plane(s) mapping technique, instead of bit-plane(s) replacement to make each cover pixel usable for secret embedding. This paper will demonstrate that this strategy produces stego-images that have minimal distortion, high embedding efficiency, reasonably good stego-image quality and robustness against 3 well-known targeted steganalysis tools.