二值图像变换使用二维混沌映射

F. Belkhouche, U. Qidwai, I. Gokcen, D. Joachim
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引用次数: 22

摘要

提出了一种利用混沌映射进行二值图像变换的算法。由于混沌具有类似随机的行为,因此它是加密的理想选择。我们证明了二维离散时间动力系统具有一个正李雅普诺夫指数允许以不可预测的方式变换图像。该算法作用于像素位置,利用初始状态敏感性产生的扩散特性以类随机方式完成变换。建议的算法使用三种类型的密钥:初始状态、外部参数和迭代次数。以所谓的Henon映射为例,我们表明,即使密钥稍微改变,该算法也会产生几乎不相关的图像,使其成为一种有吸引力且快速的图像加密方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Binary image transformation using two-dimensional chaotic maps
We present an algorithm for binary image transformation using chaotic maps. Because of its random-like behavior, chaos is a good candidate for encryption. We show that a two-dimensional discrete time dynamical system with one positive Lyapunov exponent allows the transformation of the image in an unpredictable manner. The suggested algorithm acts on the pixel position, where the diffusion property resulting from the sensitivity to the initial states is used to accomplish the transformation in a random-like way. The suggested algorithm uses three types of keys: initial state, external parameters and the number of iterations. Using the so-called Henon map as an example, we show that the algorithm produces almost uncorrelated images even when the keys are slightly changed, making it an attractive and fast method for image encryption.
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