Fractional and Integer Order Chaotic System-based Pseudo Random Bit Generator for Secure Image Encryption

E. Ince, B. Karakaya, M. Türk
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Abstract

This paper presents an implementation of continuous-time chaotic system-based pseudo random bit generation by using fractional order Chen-Lee and integer order Lorenz systems. Since chaotic systems are very popular in random bit generator applications, both fractional and integer order chaotic systems are used in the proposed design. The electronic circuit equivalence of chaotic systems are designed and simulated in Orcad-Pspice environment to use as an entropy source to the proposed a new post-processor algorithm. The generated random bit stream is tested by using NIST 800.22 statistical test suite to demonstrate the randomness of the proposed system statistically. Also, an image encryption application is executed using a pseudo random bit stream. The results of the statistical tests and image encryption show that the proposed pseudo random bit generator is suitable and can be preferred in secure image/media transmission/communication systems.
基于分数阶和整数阶混沌系统的伪随机比特发生器用于安全图像加密
本文利用分数阶Chen-Lee系统和整数阶Lorenz系统实现了基于连续时间混沌系统的伪随机比特生成。由于混沌系统在随机位发生器应用中非常流行,因此在本设计中同时使用了分数阶和整数阶混沌系统。在Orcad-Pspice环境中设计并仿真了混沌系统的电子电路等效,并将其作为新后处理算法的熵源。利用NIST 800.22统计测试套件对生成的随机比特流进行了测试,从统计上证明了所提出系统的随机性。另外,使用伪随机位流执行图像加密应用程序。统计测试和图像加密的结果表明,所提出的伪随机比特发生器是合适的,可以优先用于安全的图像/媒体传输/通信系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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