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Cipher systems based on controlled exact chaotic maps

机译:基于受控精确混沌图的密码系统

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摘要

In this paper, we present a class of chaotic clock-controlled cipher systems based on two exact chaotic maps, where each map is capable of generating exact chaotic time series of the logistic map. This class is designed in such a way that one map controls the iterations of the second map. The suggested technique results in generating orbits possessing long cycle length and high level of security from the two periodic exact maps. In the first part of this paper, two keystream generators based on two exact chaotic logistic maps are suggested for use in cryptographic applications. The necessary conditions to generate orbits with guaranteed long enough cycle length are established. Furthermore, the generated keystreams are demonstrated to possess excellent randomness properties. In the second part, we suggest a clock-controlled encryption scheme related to Baptista's scheme and based on two exact chaotic logistic maps. This technique results in increasing the size of the key space, and hence may increase the security level against some existing cryptanalytic attacks. Furthermore, it leads to reducing the size of the ciphertext file and propably increasing the encryption speed.
机译:在本文中,我们提出了一种基于两个精确混沌映射的混沌时钟控制密码系统,其中每个映射都能够生成逻辑映射的精确混沌时间序列。此类的设计方式是,一个映射控制第二个映射的迭代。所提出的技术导致从两个周期精确图生成具有长周期长度和高安全级别的轨道。在本文的第一部分中,建议在密码学应用中使用基于两个精确的混沌逻辑映射的两个密钥流生成器。建立了产生具有足够长的周期长度的保证轨道的必要条件。此外,生成的密钥流被证明具有出色的随机性。在第二部分中,我们建议一种时钟控制的加密方案,该方案与Baptista方案有关,并基于两个精确的混沌逻辑映射。此技术导致密钥空间的大小增加,因此可能会增加针对某些现有密码分析攻击的安全级别。此外,这导致减小密文文件的大小并适当地提高加密速度。

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