三维混沌映射中的混沌同步及其在密码学中的应用

Nalin Chhibber, G. Patra
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引用次数: 0

摘要

近年来,混沌理论在物理、数学、工程、生物、化学、经济学和大气科学等各个领域得到了广泛的研究。近十年来,连续动力系统和离散动力系统在密码系统开发中的应用越来越广泛。本文提出了一种新的基于多动态系统混沌同步的加密算法,并演示了其在密码学中的应用。其思想是使用分组密码对明文的每个部分使用单独的混沌映射来加密数据。发送方和接收方系统是同步的,并用于生成密钥。这些密钥可以被认为是伪随机的,并单独应用于每个块。这种耦合的、基于混沌的方法使得键预测过程实际上不可能实现,并提供了针对常见统计攻击的保护。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synchronization of chaos in multiple three-dimensional chaotic maps and its application in cryptography
In recent years, extensive studies have been done in the theory of chaos in different fields of physics, mathematics, engineering, biology, chemistry, economics and atmospheric sciences. Since the beginning of last decade, the use of continuous as well as discrete dynamical systems has been quite popular to develop cryptosystems. In this paper, we intend to propose a new encryption algorithm based on synchronization of chaos in multiple dynamical systems and demonstrate its use in cryptography. The idea is to use block ciphers to encrypt data using separate chaotic maps for each portion of plain-text. Sender and receiver systems are synchronized and are used to generate secret keys. These secret keys can be considered as pseudo-random and applied individually to each block. Such a coupled, chaos-based approach makes the process of key-prediction practically impossible and provides protection against common statistical attacks.
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