基于混沌系统的两种密码算法与Salsa20相结合的混合改进轻量级算法

Zaid M. Jawad Kubba, Haider K. Hoomod
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引用次数: 12

摘要

在数字时代,密码算法在抵御各种攻击的信息技术中起着至关重要的作用。为了实现信息系统的安全问题,人们做了许多研究和算法。传统的密码学算法具有运算复杂度高的特点。另一方面,轻量级算法是解决在受限设备中应用传统加密时遇到的大多数安全问题的方法。然而,对称密码被广泛用于保证约束设备中数据通信的安全性。在本研究中,我们提出了一种基于PRESENT和Salsa20两种加密算法的混合算法。同时,利用混沌系统的二维逻辑映射生成伪随机密钥,提高了算法的复杂度。该算法的目标是通过提高当前present算法的复杂性,同时保持计算操作的性能最小化,从而提出一种混合算法。该算法运行效率高,执行时间短,生成的序列密钥的分析结果通过了NIST套件的随机性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Hybrid Modified Lightweight Algorithm Combined of Two Cryptography Algorithms PRESENT and Salsa20 Using Chaotic System
Cryptography algorithms play a critical role in information technology against various attacks witnessed in the digital era. Many studies and algorithms are done to achieve security issues for information systems. The high complexity of computational operations characterises the traditional cryptography algorithms. On the other hand, lightweight algorithms are the way to solve most of the security issues that encounter applying traditional cryptography in constrained devices. However, a symmetric cipher is widely applied for ensuring the security of data communication in constraint devices. In this study, we proposed a hybrid algorithm based on two cryptography algorithms PRESENT and Salsa20. Also, a 2D logistic map of a chaotic system is applied to generate pseudo-random keys that produce more complexity for the proposed cipher algorithm. The goal of the proposed algorithm is to present a hybrid algorithm by enhancing the complexity of the current PRESENT algorithm while keeping the performance of computational operations as minimal. The proposed algorithm proved working efficiently with fast executed time, and the analysed result of the generated sequence keys passed the randomness of the NIST suite.
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