论文标题
有效的可逆数据通过两层双峰嵌入隐藏
Efficient reversible data hiding via two layers of double-peak embedding
论文作者
论文摘要
近年来,可逆数据隐藏继续引起极大的关注。特别是,越来越多的作者专注于图像的较高显着位(HSB)平面,这些平面可以产生更多的冗余空间。另一方面,由于对嵌入率的损害,较低的显着钻头平面通常被嵌入现有方案中。本文提出了一种有效的可逆数据隐藏方案,该方案通过双峰两层嵌入(DTLE)策略进行预测误差扩展。图像的较高六位平面被分配为HSB平面,并将双重预测误差峰在任何一个嵌入层中应用。与一个误差峰策略相比,这可以更全面地使用图像的冗余空间。此外,我们进行了复杂图像的中间检测器预处理,以减少辅助信息的大小。一系列实验结果表明,我们的DTLE方法在现实世界数据集上达到了高达83%的嵌入率,同时保证了更好的图像质量。
Reversible data hiding continues to attract significant attention in recent years. In particular, an increasing number of authors focus on the higher significant bit (HSB) plane of an image which can yield more redundant space. On the other hand, the lower significant bit planes are often ignored for embedding in existing schemes due to their harm to the embedding rate. This paper proposes an efficient reversible data hiding scheme via a double-peak two-layer embedding (DTLE) strategy with prediction error expansion. The higher six-bit planes of the image are assigned as the HSB plane, and double prediction error peaks are applied in either embedding layer. This makes fuller use of the redundancy space of images compared with the one error peak strategy. Moreover, we carry out the median-edge detector pre-processing for complex images to reduce the size of the auxiliary information. A series of experimental results show that our DTLE approach achieves up to 83% higher embedding rate on real-world datasets while guaranteeing better image quality.