Higher dimensional chaos for Audio encryption

S. Babu, Ilango Paramasivam
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引用次数: 12

Abstract

In recent years, a large number of discrete chaotic cryptographic algorithms have been proposed. The chaotic based cryptograms are suitable for large-scale data encryption such as images, videos or audio data. This paper propose a novel higher dimensional chaotic system for audio encryption, in which variables are treated as encryption keys in order to achieve secure transmission of audio signals. Since the highly sensitive to the initial condition of a system and to the variation of a parameter, and chaotic trajectory is so unpredictable. As a result we obtain much higher security. The higher dimensional of the algorithm is used to enhance the key space and security of the algorithm. The security analysis of the algorithm is given. The experiments show that the algorithm has the characteristic of sensitive to initial condition, high key space; pixel distribution uniformity and the algorithm will not break in chosen/known-plaintext attacks.
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音频加密的高维混沌
近年来,人们提出了大量的离散混沌密码算法。混沌密码适用于图像、视频、音频等大规模数据加密。为了实现音频信号的安全传输,本文提出了一种新的高维混沌音频加密系统,将变量作为加密密钥。由于混沌轨迹对系统的初始条件和参数的变化高度敏感,因而具有不可预测性。因此,我们获得了更高的安全性。利用算法的高维度增强了算法的密钥空间和安全性。对该算法进行了安全性分析。实验表明,该算法具有对初始条件敏感、密钥空间高的特点;像素分布均匀且算法不会在选择/已知明文攻击中被破解。
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