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Implementation of an improved chaotic encryption algorithm for real-time embedded systems by using a 32-bit microcontroller

机译:通过使用32位微控制器为实时嵌入式系统实现改进的混沌加密算法

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Currently, several embedded applications in military, industry, banking transference, e-commerce, biometric systems and others use insecure communication channels such as Internet to transmit or store confidential information. Therefore, the integrity and security of information are an important issue in continuous research. In last years, chaotic systems have been proposed in cryptography due they have several properties related with cryptography properties such as extreme sensibility on initial conditions with confusion and ergodicity with diffusion. In this paper, we present a 32-bit microcontroller implementation of an improved text encryption algorithm (based on Murillo-Escobar's algorithm [13]) for real-time embedded systems and we present a complete security analysis such as key size analysis, key sensitivity, plain text sensitivity, floating frequency, histograms, N-grams, autocorrelation, information entropy, robustness against classic attacks, randomness analysis, and security characteristics. In addition, the digital implementation and performance are analyzed such as programming details, memory required, frequency system, implementation costs and encryption time. In contrast with recent approaches presented in literature, we present a complete security analysis in both statistical and implementation level, to justify the proposed scheme in a real application. Based in the results, the proposed embedded text encryption system is secure, effective and at low cost, and it could be implemented in real-time cryptosystem based on microcontroller. (C) 2016 Elsevier B.V. All rights reserved.
机译:当前,军事,工业,银行转账,电子商务,生物识别系统等中的一些嵌入式应用程序使用不安全的通信通道(例如Internet)来传输或存储机密信息。因此,信息的完整性和安全性是持续研究的重要课题。近年来,由于密码系统具有与密码学特性相关的若干特性,例如在初始条件下具有极度的敏感性(具有混乱状态)和遍历遍历性(具有扩散性),因此在密码学中提出了混沌系统。在本文中,我们为实时嵌入式系统提供了一种改进的文本加密算法(基于Murillo-Escobar的算法[13])的32位微控制器实现,并且提出了完整的安全性分析,例如密钥大小分析,密钥敏感度,纯文本敏感度,浮动频率,直方图,N-gram,自相关,信息熵,针对经典攻击的鲁棒性,随机性分析和安全性特征。此外,还分析了数字实现和性能,例如编程细节,所需的存储器,频率系统,实现成本和加密时间。与文献中提出的最新方法相比,我们在统计和实施级别上都提供了完整的安全性分析,以证明所提出的方案在实际应用中是合理的。结果表明,所提出的嵌入式文本加密系统安全,有效,成本低廉,可以在基于微控制器的实时密码系统中实现。 (C)2016 Elsevier B.V.保留所有权利。

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