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A Tunable Bound of the Embedding Level for Reversible Data Hiding with Contrast Enhancement

机译:嵌入水平的可调界限,用于掩盖对比度增强的可逆数据

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Recently, histogram modification based reversible data hiding (RDH) techniques are exploited to enhance the image contrast. To avoid overflow and underflow, the cover image has to be pre-processed by pre-shifting a number of the histogram bins at the lower and upper ends. When the payload size becomes large, a larger number of histogram bins has to be pre-shifted, and thus the image contrast may be over enhanced. As a result, human eye perceivable image degradation may appear in the over-sharpened image. To avoid image over-sharping, the just noticeable difference measurement is exploited to estimate the maximum number of pre-shiftable histogram bins. In addition, a tunable parameter is designed to balance between the visual degradation and the embedding capacity. The experimental result shows that the proposed work is effective in estimating the bound of embedding level.
机译:最近,利用基于直方图修改的基于可逆数据隐藏(RDH)技术来增强图像对比度。为了避免溢出和下溢,必须通过在下端和上端预先转换多个直方图箱来预处理覆盖图像。当有效载荷尺寸变大时,必须预先移位更多数量的直方图,因此图像对比度可能超过增强。结果,人眼可感知的图像劣化可能出现在过度尖锐的图像中。为避免图像过度分享,利用仅限明显的差异测量来估计可预移动直方图箱的最大数量。此外,可调参数旨在平衡视觉劣化和嵌入容量之间。实验结果表明,所提出的工作在估计嵌入水平的界限方面是有效的。

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