A cryptosystem based on chaotic maps and factoring problems

N. Tahat, E. S. Ismail, A. Aljammal
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Abstract

A cryptosystem allows a sender to send any confidential or private message using a receiver's public key and the receiver next confirms the integrity and validity of the received message using his own secret key. Cryptosystem algorithms can be categorised based on the type of security suppositions, for example discrete logarithm, factorisation, and elliptic curve hard problems, which are all currently believed to be unsolvable in a reasonable time of period. Recently, cryptosystems based on chaotic maps have been proposed. Due to some subtle and close relationship between the properties of traditional cryptosystems and chaotic-based systems, the idea of using chaotic in cryptography has received a great deal of attention from many cryptography's researchers. Therefore, to enhance system security, we explore the implementation of a cryptosystem algorithm based on both cryptographic and chaotic system characteristics. We also provide security against known cryptographic attacks and discuss the performance analysis of the developed system.
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基于混沌映射和分解问题的密码系统
密码系统允许发送方使用接收方的公钥发送任何机密或私有消息,然后接收方使用自己的密钥确认接收到的消息的完整性和有效性。密码系统算法可以根据安全假设的类型进行分类,例如离散对数、因子分解和椭圆曲线难题,这些问题目前都被认为是在合理的时间内无法解决的。近年来,人们提出了基于混沌映射的密码系统。由于传统密码系统的性质与基于混沌的系统之间存在着微妙而密切的联系,因此在密码学中使用混沌的思想受到了许多密码学研究者的广泛关注。因此,为了提高系统的安全性,我们探索了一种基于密码学和混沌系统特性的密码系统算法的实现。我们还提供了针对已知密码攻击的安全性,并讨论了所开发系统的性能分析。
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