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Efficient LSB substitution for interpolation based reversible data hiding scheme

机译:基于内插的可逆数据隐藏方案的高效LSB替换

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Interpolation based reversible data hiding (IRDH) has created a new paradigm for data hiding research. This paper presents a new IRDH scheme with quadratic interpolation for digital image applications. A set of least significant bits (LSBs) are sought to be efficiently utilized in an adaptive manner for lower possible embedding distortion with higher embedding capacity. Particularly, a recent IRDH scheme employed a flag bit to track the form of embedded payload-bits (i.e., original or complement) in an embedded pixel. Whereas, we propose to utilize the correlation between the embeddable pixel and estimated versions of embedded pixel to embed one more data bit in place of the flag bit. Thus, our proposed scheme avoids using flag bit resulting in higher embedding capacity as demonstrated by our early experimental results. A significantly higher embedding capacity (i.e., about 30%-50% higher bpp) with reasonably better image quality (i.e., of about 1%-5% higher PSNR and SSIM values) is obtained for different values of capacity control parameter.
机译:基于插值的可逆数据隐藏(IRDH)为数据隐藏研究创建了一种新的范例。本文提出了一种新的IRDH方案,具有用于数字图像应用的二次插值。寻求以适应性的方式有效地利用至少一组至少有效的比特(LSB),以便更低的嵌入容量较低的嵌入失真。特别地,最近的IRDH方案采用标志位以跟踪嵌入像素中的嵌入有效载荷 - 位(即原始或补码)的形式。然而,我们建议利用嵌入像素和估计的嵌入式像素的估计版本之间的相关性来嵌入一个更多的数据位代替标志位。因此,我们所提出的方案避免使用旗位,导致我们早期实验结果所证明的更高的嵌入能力。为不同的容量控制值获得具有合理更好的图像质量(即,约为1 % - 5 %的PSNR和SSIM值的大约30 %-50 %较高的BPP)的显着更高的嵌入能力(即,约30 %-50 %较高的BPP)范围。

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