用于图像加密的量子密码方法分析

Shilpa M. Satre, Bharti Joshi
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引用次数: 0

摘要

为了保护照片免受不公平的攻击,使用了加密过程。数字时代的到来使得任何保存在云上的数据都非常容易被破解。加密是保证通信安全的关键,是一个至关重要的问题。有许多照片加密方法主要依赖于混沌逻辑映射;然而,它们也有缺点,比如密钥空间小,安全性低。本文介绍了量子混沌密码系统、三维混沌映射和量子混沌逻辑映射的实验结果。本文采用熵、结构相似指数、组合平均变化强度和净像素变化率来衡量图像加密的参数,这些参数定义了合适的图像加密方法的利用率。对于密码和原始图像,我们量化了水平和垂直位置的相关系数值,并比较了所有三种现有方法的性能。科学和实际的经济结果表明,量子混沌密码系统具有优异的性能,未来利用先进的方法可以抵抗各种密码攻击。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis on Quantum Cryptographic Approaches for Image Encryption
To secure and protect the photos from unfair tactics, the encryption process is used. the advent of the digital era has made it exceedingly easy to hack any data kept on the cloud. Encryption is critical to ensuring communication security, which is a crucial issue. There are numerous photo encryption methods that mostly rely on chaotic logistic maps; however, they have downsides such a small key space and low security. Current analysis introduced experimental results of quantum chaotic cryptosystem,3D-Chaotic map and quantum chaotic logistic map. This paper we measure image encryption parameters are Entropy, structural similarity index measure, combined average changing intensity and net pixel change rate which defines utilization of suitable image encryption approaches. For the cypher and the original image, we quantify the correlation coefficient value in both the horizontal and vertical positions with comparison of all three existing Approach-es performance. The scientific and practical economic results reveal that the quantum chaotic cryptosystem has outstanding performance and in future with utilization of advanced Approaches we can resist various cryptographic attacks.
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