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Robust Reversible Watermarking via Clustering and Enhanced Pixel-Wise Masking

机译:通过聚类和增强的像素明智掩蔽实现强大的可逆水印

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摘要

Robust reversible watermarking (RRW) methods are popular in multimedia for protecting copyright, while preserving intactness of host images and providing robustness against unintentional attacks. However, conventional RRW methods are not readily applicable in practice. That is mainly because: 1) they fail to offer satisfactory reversibility on large-scale image datasets; 2) they have limited robustness in extracting watermarks from the watermarked images destroyed by different unintentional attacks; and 3) some of them suffer from extremely poor invisibility for watermarked images. Therefore, it is necessary to have a framework to address these three problems, and further improve its performance. This paper presents a novel pragmatic framework, wavelet-domain statistical quantity histogram shifting and clustering (WSQH-SC). Compared with conventional methods, WSQH-SC ingeniously constructs new watermark embedding and extraction procedures by histogram shifting and clustering, which are important for improving robustness and reducing run-time complexity. Additionally, WSQH-SC includes the property-inspired pixel adjustment to effectively handle overflow and underflow of pixels. This results in satisfactory reversibility and invisibility. Furthermore, to increase its practical applicability, WSQH-SC designs an enhanced pixel-wise masking to balance robustness and invisibility. We perform extensive experiments over natural, medical, and synthetic aperture radar images to show the effectiveness of WSQH-SC by comparing with the histogram rotation-based and histogram distribution constrained methods.
机译:鲁棒的可逆水印(RRW)方法在多媒体中很流行,可以保护版权,同时保留主机图像的完整性,并提供针对意外攻击的鲁棒性。然而,常规的RRW方法在实践中不容易应用。这主要是因为:1)它们无法在大型图像数据集上提供令人满意的可逆性; 2)从不同的无意攻击破坏的水印图像中提取水印的鲁棒性有限; 3)其中一些人的水印图像的隐形性极差。因此,有必要建立一个框架来解决这三个问题,并进一步提高其性能。本文提出了一种新颖的实用框架,即小波域统计量直方图移位和聚类(WSQH-SC)。与传统方法相比,WSQH-SC通过直方图移位和聚类巧妙地构造了新的水印嵌入和提取程序,这对于提高鲁棒性和降低运行时复杂性至关重要。此外,WSQH-SC包括受属性启发的像素调整,可有效处理像素的上溢和下溢。这导致令人满意的可逆性和隐形性。此外,为了提高其实际适用性,WSQH-SC设计了增强的逐像素遮罩以平衡鲁棒性和隐形性。我们通过与基于直方图旋转和基于直方图分布约束的方法进行比较,对自然,医学和合成孔径雷达图像进行了广泛的实验,以证明WSQH-SC的有效性。

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