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Traceable Quantum Steganography Scheme Based on Pixel Value Differencing

机译:基于像素值差分的可追溯量子密写方案

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摘要

A novel and traceable quantum steganography scheme based on pixel value differencing (PVD) is proposed. In the proposed scheme, a quantum cover image is divided into non-overlapping blocks of two consecutive pixels. Then, by a series of reversible logic circuits, we calculate the difference value based on the values of the two pixels in each block and classify it as one of a set of continuous ranges. The secret image and operator information are embedded in the cover image by using the new obtained difference value to replace the original one. The number of bits of secret image that can be embedded in a block is determined, and the number of bits of operator information is decided by the range of the difference value belongs to. Moreover, when the embedded data is extracted from a stego image, it is not necessary to refer to the original cover image. The performance of the proposed scheme is based on the analysis of several categories of simulation results, such as visual quality, capacity, and robustness.
机译:提出了一种基于像素值差(PVD)的新型可溯源量子密写方案。在提出的方案中,将量子覆盖图像划分为两个连续像素的不重叠块。然后,通过一系列可逆逻辑电路,我们基于每个块中两个像素的值计算差值,并将其分类为一组连续范围中的一个。通过使用新获得的差异值替换原始图像,将秘密图像和操作员信息嵌入到封面图像中。确定可以嵌入在块中的秘密图像的位数,并且由差值所属的范围确定操作员信息的位数。此外,当从隐身图像中提取嵌入数据时,不必参考原始封面图像。所提出方案的性能基于对几种模拟结果的分析,例如视觉质量,容量和鲁棒性。

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