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Observer-based chaos synchronization in the generalized chaotic Lorenz systems and its application to secure encryption

机译:广义混沌Lorenz系统中基于观测器的混沌同步及其在加密中的应用

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This paper studies the application of the observer-based chaos synchronization in the so-called generalized Lorenz systems to secure encryption. More precisely, a modified version of the chaos shift keying (CSK) scheme for secure encryption and decryption of data is proposed. Recall, that the classical CSK method determines the correct value of binary signal through checking which unsynchronized system is getting synchronized. On the contrary, our novel method, called as the anti-synchronization chaos shift keying (ACSK) method, determines wrong value of binary signal through checking which already synchronized system is loosing synchronization. Even when using two very close each to other chaotic systems, the anti-synchronization is thousand times faster than synchronization. As a consequence, unlike the classical CSK, the method proposed here requires very reasonable amount of data to encrypt and time to decrypt a single bit. Moreover, its security can be systematically investigated showing its good resistance against typical decryption attacks
机译:本文研究了基于观察者的混沌同步在所谓的广义Lorenz系统中用于保护加密的应用。更准确地说,提出了用于安全加密和解密数据的混沌移位键控(CSK)方案的修改版本。回想一下,经典的CSK方法通过检查哪个未同步系统正在同步来确定二进制信号的正确值。相反,我们的新方法称为反同步混沌移位键控(ACSK)方法,它通过检查哪个已经同步的系统失去同步来确定二进制信号的错误值。即使当使用彼此非常接近的两个混沌系统时,反同步也比同步快一千倍。结果,不同于经典的CSK,这里提出的方法需要非常合理数量的数据来加密和解密单个位的时间。此外,可以对其系统的安全性进行系统地研究,表明其对典型的解密攻击具有良好的抵抗力

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