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Chaos-Based Symmetric Key Cryptosystems

机译:基于混乱的对称密钥密码系统

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Chaos theory is the study of dynamical systems that are highly sensitive to initial conditions and exhibit seemingly random behavior. From the perspective of cryptography and information security, randomness generated from entirely deterministic systems is a very appealing property. As such, the application of chaos in modern cryptography has been a topic of much research and debate for over a decade. This paper presents an overview of chaotic dynamics and their role in symmetric key chaos-based cryptosystems from both a theoretical and practical perspective. It is argued that chaos-based ciphers are not likely to succeed until a valid and accepted definition of discrete chaos in finite domains is established, the inefficiencies of chaos-based cipher implementations are improved, and thorough security analysis reveals them to be comparable to standardized cryptographic primitives.
机译:Chaos理论是对对初始条件高度敏感的动态系统的研究,表现出看似随机行为。从加密和信息安全的角度来看,完全确定性系统生成的随机性是一个非常有吸引力的属性。因此,混沌在现代加密中的应用已经是十多年来的研究和辩论的主题。本文概述了混沌动态及其在对称密钥混沌的密码系统中的作用,从理论和实践的角度来看。基于混乱的密码不太可能成功,直到建立有限域的离散混乱的有效和接受的定义,基于混乱的密码实现的效率得到改善,彻底的安全分析显示它们与标准化相当加密原语。

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