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A Novel Image Encryption Scheme Based on Walsh Compressed Quantum Spinning Chaotic Lorenz System

机译:一种基于Walsh压缩量子旋转混沌Lorenz系统的新型图像加密方案

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摘要

In today's era, a fascinating discipline is immensely influencing a wide miscellany in different fields of science and technology known as quantum cryptography. The amalgamation of different unconventional themes of information security and fast computing have appended inventiveness and creativity into the performance of quantum systems which exhibits astonishing outcomes surprisingly for the most complicated nonlinear models. The exploitation of chaos theory at quantum scale is a dynamical new approach towards the system of information security. Regarding this a novel image encryption approach based on modern standards of chaos, fast computing and quantum encryption has been proposed in this article. In the designed scheme, Walsh transformation is exploited to get standard image compression as to reduce data being processed resulting in fast computing. Quantum spinning and rotation operators leading new protocols, compressed data is encrypted using quantum spinning and rotation operators. For adding more confusion capability in contemplated algorithm discrete fractional chaotic Lorenz system is also accomplished. The proposed system has been validated through statistical analysis, the assessments accordingly by statistical analysis tests clearly emphasis that proposed scheme of encryption is comparatively equitable for the digital images security.
机译:在今天的时代,一个迷人的纪律在称为量子密码学的不同领域的宽容杂乱中受到了极大的影响。信息安全和快速计算的不同非传统主题的融合已经介绍了对量子系统的性能的创造性和创造性,这对最复杂的非线性模型令人惊讶的令人惊讶的结果。在量子量表中对混沌理论的利用是信息安全系统的动态新方法。关于这篇文章中提出了一种基于现代混沌标准的新型图像加密方法,在本文中提出了快速计算和量子加密。在设计方案中,利用Walsh转换以获得标准图像压缩,以减少正在处理的数据,从而产生快速计算。量子纺纱和旋转操作员领先的新协议,使用量子纺纱和旋转操作员加密压缩数据。为了在预期的算法中添加更多混淆能力,也完成了离散分数混沌洛伦兹系统。通过统计分析验证了该系统已通过统计分析验证,相应的评估通过统计分析测试清楚地强调,建议的加密计划对数字图像安全相对公平地公平。

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