A novel color image encryption method using Fibonacci transformation and chaotic systems

Chunming Xu
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Abstract

INTRODUCTION: With the rapid increase in network information data, the protection of image data has become a challenging task, where image encryption technology can play an important role. This paper studies color image encryption algorithms and proposes a novel method for color image encryption to enhance the security and effectiveness of image encryption.OBJECTIVES: The purpose of this study is to effectively integrate different channel information of color images, thereby improving the effect of pixel decomposition based image encryption algorithm. Different indicators are used to analyze the effect of image encryption, and it is also compared with existing image encryption algorithms.METHODS: Initially, through pixel decomposition, the pixel values of the R, G, B channels of the color image, each with a depth of 8 bits, are decomposed into two integers between 0-15 and combined into a new data matrix. Then, multiple rounds of scrambling are performed on the transformed matrix. Next, the Fibonacci transformation matrix is applied to the scanned matrix to further change the values of its elements. Finally, XOR diffusion operation is carried out to obtain the encrypted image.RESULTS: Experimental results show that the proposed method achieves relatively good results in multiple image encryption indicator tests. The algorithm not only inherits the advantages of existing image encryption but also effectively integrates the information of each channel of the color image, providing better security.CONCLUSION: This study further proves the effectiveness of image encryption algorithms based on pixel decomposition and provides a new idea for better color image encryption algorithms, which is expected to be applied to other issues such as information hiding and data protection.
利用斐波那契变换和混沌系统的新型彩色图像加密方法
简介:随着网络信息数据的迅速增加,图像数据的保护成为一项具有挑战性的任务,而图像加密技术在其中可以发挥重要作用。本文研究了彩色图像加密算法,并提出了一种新型的彩色图像加密方法,以提高图像加密的安全性和有效性:本研究的目的是有效整合彩色图像的不同通道信息,从而提高基于像素分解的图像加密算法的效果。方法:首先,通过像素分解,将彩色图像的 R、G、B 三个通道的像素值(每个通道的深度为 8 位)分解成 0-15 之间的两个整数,并组合成一个新的数据矩阵。然后,对转换后的矩阵进行多轮扰码处理。接着,将斐波那契变换矩阵应用于扫描矩阵,进一步改变其元素的值。结果:实验结果表明,所提出的方法在多个图像加密指标测试中取得了比较好的结果。结论:本研究进一步证明了基于像素分解的图像加密算法的有效性,为更好的彩色图像加密算法提供了新思路,有望应用于信息隐藏和数据保护等其他问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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