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Modeling and analysis of interpolation based adaptive reversible data hiding

机译:基于插值的自适应可逆数据隐藏建模与分析

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In this paper, an improved interpolation-based Reversible Data Hiding (IRDH) scheme is modeled and analyzed. All possible embeddable bits are sought to be effectively utilized to minimize embedding distortion with higher embedding capacity. Particularly, we propose to utilize the correlation between the embeddable pixel and estimated versions of embedded pixel. This proposed modification would help avoid the use of any flag bit for distinguishing the original payload bits from their complement as such an extra payload bit can be embedded therein. Experimental results have demonstrated that our improved scheme can embed varying size payload with higher embedding rate and better image quality compared to the recent IRDH schemes. A better embedded image quality can be ensured for a given capacity requirement with a deterministically selected capacity control parameter for adaptive embedding.
机译:本文对一种改进的基于插值的可逆数据隐藏(IRDH)方案进行了建模和分析。试图有效地利用所有可能的可嵌入比特,以最小化具有更高嵌入能力的嵌入失真。特别地,我们建议利用可嵌入像素和嵌入像素的估计版本之间的相关性。提出的修改将有助于避免使用任何标志位来将原始有效载荷位与它们的补码区分开来,因为这样的额外有效载荷位可以被嵌入其中。实验结果表明,与最近的IRDH方案相比,我们改进的方案可以以更高的嵌入率和更好的图像质量嵌入大小可变的有效载荷。对于给定的容量要求,可以使用确定性选择的用于自适应嵌入的容量控制参数来确保更好的嵌入式图像质量。

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