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Finite Precision Logistic Map between Computational Efficiency and Accuracy with Encryption Applications

机译:加密应用程序在计算效率和精度之间的有限精度逻辑映射

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Chaotic systems appear in many applications such as pseudo-random number generation, text encryption, and secure image transfer. Numerical solutions of these systems using digital software or hardware inevitably deviate from the expected analytical solutions. Chaotic orbits produced using finite precision systems do not exhibit the infinite period expected under the assumptions of infinite simulation time and precision. In this paper, digital implementation of the generalized logistic map with signed parameter is considered. We present a fixed-point hardware realization of a Pseudo-Random Number Generator using the logistic map that experiences a trade-off between computational efficiency and accuracy. Several introduced factors such as the used precision, the order of execution of the operations, parameter, and initial point values affect the properties of the finite precision map. For positive and negative parameter cases, the studied properties include bifurcation points, output range, maximum Lyapunov exponent, and period length. The performance of the finite precision logistic map is compared in the two cases. A basic stream cipher system is realized to evaluate the system performance for encryption applications for different bus sizes regarding the encryption key size, hardware requirements, maximum clock frequency, NIST and correlation, histogram, entropy, and Mean Absolute Error analyses of encrypted images.
机译:混沌系统出现在许多应用中,例如伪随机数生成,文本加密和安全图像传输。这些使用数字软件或硬件的系统的数值解决方案不可避免地会偏离预期的分析解决方案。在有限的仿真时间和精度的假设下,使用有限精度系统产生的混沌轨道不会表现出预期的无限周期。本文考虑了带符号参数的广义逻辑映射的数字实现。我们介绍了使用逻辑映射图的伪随机数生成器的定点硬件实现,该逻辑映射图在计算效率和准确性之间进行了权衡。引入的一些因素(例如使用的精度,操作的执行顺序,参数和初始点值)会影响有限精度图的属性。对于正参数和负参数情况,研究的属性包括分叉点,输出范围,最大Lyapunov指数和周期长度。在两种情况下比较了有限精度逻辑映射的性能。实现了一个基本的流密码系统,以评估有关加密密钥大小,硬件要求,最大时钟频率,NIST和相关性,直方图,熵和加密图像的平均绝对误差分析的不同总线大小的加密应用程序的系统性能。

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