Wang Ling, Ran Qiwen, Ding Junrong
School of Internet, Anhui University, Hefei 230039, China.
National Key Laboratory of Tunable Laser Technology, Harbin Institute of Technology, Harbin 150001, China.
Entropy (Basel). 2023 Dec 6;25(12):1629. doi: 10.3390/e25121629.
In encryption technology, image scrambling is a common processing operation. This paper proposes a quantum version of the 3D Mobius scrambling transform based on the QRCI model, which changes not only the position of pixels but also the gray values. The corresponding quantum circuits are devised. Furthermore, an encryption scheme combining the quantum 3D Mobius transform with the 3D hyper-chaotic Henon map is suggested to protect the security of image information. To facilitate subsequent processing, the RGB color image is first represented with QRCI. Then, to achieve the pixel-level permutation effect, the quantum 3D Mobius transform is applied to scramble bit-planes and pixel positions. Ultimately, to increase the diffusion effect, the scrambled image is XORed with a key image created by the 3D hyper-chaotic Henon map to produce the encrypted image. Numerical simulations and result analyses indicate that our designed encryption scheme is secure and reliable. It offers better performance in the aspect of key space, histogram variance, and correlation coefficient than some of the latest algorithms.
在加密技术中,图像置乱是一种常见的处理操作。本文提出了一种基于QRCI模型的三维莫比乌斯置乱变换的量子版本,它不仅改变像素的位置,还改变灰度值。设计了相应的量子电路。此外,还提出了一种将量子三维莫比乌斯变换与三维超混沌亨农映射相结合的加密方案,以保护图像信息的安全。为便于后续处理,首先用QRCI表示RGB彩色图像。然后,为实现像素级置换效果,应用量子三维莫比乌斯变换来置乱位平面和像素位置。最后,为增强扩散效果,将置乱后的图像与由三维超混沌亨农映射创建的密钥图像进行异或运算,以生成加密图像。数值模拟和结果分析表明,我们设计的加密方案安全可靠。在密钥空间、直方图方差和相关系数方面,它比一些最新算法具有更好的性能。