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Improved Pairwise Embedding for High-Fidelity Reversible Data Hiding

机译:改进的成对嵌入技术可实现高保真可逆数据隐藏

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Pairwise reversible data hiding (RDH) restricts the embedding to 3 combinations of bits per pixel pair (“00”, “01”, “10”), by eliminating the embedding of “1” into both pixels. The gain in quality is significant and the loss in embedding bitrate is compensated by embedding into previously shifted pairs. This restriction requires a special coding procedure to format the encrypted hidden data. This paper proposes a new set of embedding equations for pairwise RDH. The proposed approach inserts either one or two data bits into each pair based on its type, bypassing the need for special coding. The proposed equations can be easily integrated in most pairwise reversible data hiding frameworks. They also provide more room for data embedding than their classic counterparts at the low embedding distortion required for high-fidelity RDH.
机译:通过消除将“ 1”嵌入两个像素,成对可逆数据隐藏(RDH)将嵌入限制为每个像素对3位组合(“ 00”,“ 01”,“ 10”)。质量的提高是显着的,并且通过嵌入到先前移位的对中可以补偿嵌入比特率的损失。此限制要求特殊的编码过程来格式化加密的隐藏数据。本文为成对的RDH提出了一组新的嵌入方程。所提出的方法根据其类型在每对中插入一个或两个数据位,从而无需特殊编码。所提出的方程式可以轻松地集成到大多数成对可逆数据隐藏框架中。在高保真RDH所需的低嵌入失真的情况下,与传统的同类产品相比,它们还提供了更多的数据嵌入空间。

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