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A novel legitimacy preserving data hiding scheme based on LAS compressed code of VQ index tables

机译:一种基于VQ索引表的LAS压缩码的合法性保存数据隐藏方案

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摘要

Data hiding is a technique for secret and secure data storing and transmission that embeds data into a media such as an image, audio, video and so on, with minimal quality degradation of the media. Some developed data hiding schemes are reversible. Reversibility property allows the media to be recovered completely after extraction of the embedded data. Vector Quantization (VQ)-based image data hiding is one of the most popular study areas in the literature. However, most VQ-based reversible data hiding schemes generate non-legitimate codes as output. In other words output codes generated by such schemes could not be decoded by the conventional VQ or VQ based decoders and may arouse the attention of interceptors. On the other hand, the existing VQ based reversible data hiding schemes that generate legitimate VQ codes as output, suffer from low capacity and poor quality of stego-image. In this paper a novel reversible data hiding scheme for VQ-compressed images based on locally adaptive data compression scheme (LAS) is proposed. Unlike other schemes, the proposed scheme doesn't change the VQ indices; data is embedded by choosing one of the possible ways to encode each index. As a result, in comparison with the schemes that embed data by index replacement, in the proposed scheme no extra distortion is made by data embedding and the outputted codes are compatible with the conventional LAS decoder. These properties help to hide the existence of secret data and make the scheme suitable for steganography. Moreover, a framework to combine the proposed scheme with some other schemes to improve their capacity and embedding side information is proposed. Since LAS is a general data compression scheme, the proposed scheme could be used to embed data into any data formats. All existing LAS based data hiding schemes produce non-legitimate codes as their outputs and the proposed scheme is the first and only one that produces legitimate codes as output. Experimental results show that the proposed scheme outperforms the existing LAS based schemes and some other VQ based data hiding schemes. On average, the proposed scheme embeds 2.14 bits per index with almost the same bit-rate as the bit-rate of the VQ index table.
机译:数据隐藏是一种用于秘密和安全数据存储和传输的技术,该技术将数据嵌入到诸如图像,音频,视频等介质中,而对介质的质量降级最小。一些已开发的数据隐藏方案是可逆的。可逆性允许提取嵌入数据后完全恢复媒体。基于矢量量化(VQ)的图像数据隐藏是文献中最受欢迎的研究领域之一。但是,大多数基于VQ的可逆数据隐藏方案都会生成不合法的代码作为输出。换句话说,由这种方案产生的输出代码不能被常规的基于VQ或基于VQ的解码器解码,并且可能引起拦截器的注意。另一方面,现有的基于VQ的可逆数据隐藏方案产生合法的VQ代码作为输出,其容量低且隐秘图像质量差。本文提出了一种基于局部自适应数据压缩方案(LAS)的VQ压缩图像可逆数据隐藏方案。与其他方案不同,所提出的方案不会更改VQ指标。通过选择对每个索引进行编码的一种可能方式来嵌入数据。结果,与通过索引替换嵌入数据的方案相比,在所提出的方案中,通过数据嵌入不会产生额外的失真,并且输出的代码与常规的LAS解码器兼容。这些属性有助于隐藏秘密数据的存在,并使该方案适合隐写术。此外,提出了将提议的方案与其他一些方案相结合以提高其容量和嵌入辅助信息的框架。由于LAS是一种通用的数据压缩方案,因此可以使用所提出的方案将数据嵌入任何数据格式。所有现有的基于LAS的数据隐藏方案都会生成非合法代码作为其输出,并且所提出的方案是第一个也是唯一一个将合法代码作为输出的方案。实验结果表明,该方案优于现有的基于LAS的方案和其他基于VQ的数据隐藏方案。平均而言,所提出的方案在每个索引中嵌入2.14位,其比特率几乎与VQ索引表的比特率相同。

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