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Quantum Watermarking Based on Neighbor Mean Interpolation and LSB Steganography Algorithms

机译:基于邻居平均插值和LSB隐写算法的量子水印

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摘要

This paper investigates a quantum watermarking scheme using image interpolation method. Based on the novel enhanced quantum representation of digital images (NEQR), a new scaling-up quantum carrier is generated via Neighbor Mean Interpolation (NMI) method first. Then, three binary watermark images are formed a conceptual quantum watermark image with 3-qubit grayscale based on NEQR, and it is embedded into the new generated quatnum carrier image pixel's least significant bit (LSB). To achieve this aim, the Quantum Fourier Transform (QFT) is introduced first. Based on QFT operations, several QFT based quantum modules, i.e., quantum Adder, Subtractor and Divider are defined as well as some others commonly used quantum modules also reviewed. Following that, based on these quantum modules, the quantum circuit for image scaling-up is presented first, which can generate a new enlarged quantum carrier image. Then, based on the generated quantum carrier image, we further illustrate the integrated quantum circuit for how to embed quantum watermark images into quantum grayscale carrier images. Finally, the quantum circuit complexity is analyzed, which proves that we presented quantum watermarking scheme can be realized within polynomial time complexity, and the experiment results based on classical computer (i.e., non-quantum version) are simulated under the classical computer software MATLAB 2016a, which demonstrates that we investigated method has an acceptable visual effect and also easy to detect the attacks.
机译:本文使用图像插值方法调查量子水印方案。基于数字图像(NEQR)的新颖增强量子表示,首先通过邻居平均插值(NMI)方法产生新的缩放量子载波。然后,形成三个二进制水印图像,其具有基于NEQR的3个速度灰度的概念量子水印图像,并且嵌入到新的生成的朗马载体图像像素的最低有效位(LSB)中。为实现此目的,首先介绍量子傅里叶变换(QFT)。基于QFT操作,定义了几种基于QFT的量子模块,即量子加法器,减法器和分频器以及其他一些常用的量子模块也介绍过。在此之后,基于这些量子模块,首先呈现用于图像缩放的量子电路,其可以产生新的量子载波图像。然后,基于所产生的量子载体图像,我们进一步示出了用于如何将量子水印图像嵌入量子灰度载波图像中的集成量子电路。最后,分析了量子电路复杂性,证明我们呈现量子水印方案可以在多项式时间复杂度内实现,并且基于经典计算机(即非量子版本)的实验结果在经典计算机软件Matlab 2016A下模拟展示我们调查方法具有可接受的视觉效果,也很容易检测到攻击。

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