在大范围内提供高熵的分坡混沌映射

P. Paul, Maisha Sadia, Anur Dhungel, Parker Hardy, Md. Sakib Hasan
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引用次数: 0

摘要

提出了一种新的一维离散混沌映射。与已经发表的一维映射相比,通过这种非线性映射的刚性传递特性,在提出的设计中实现了显着改善的混沌行为。这项工作的新颖之处在于提出了在单模态非线性电路中拆分向上和向下倾斜机构以获得更硬斜率的方法。提出了一种基于不动点稳定性分析的设计方法,该方法一般适用于各种非线性电路。利用分岔图、相关系数和李雅普诺夫指数分析了电路的混沌复杂度。结果与已报道的工作进行了比较,证明了显著的改进。这种分裂斜率混沌映射具有较高的混沌复杂度,提供了覆盖整个操作区域100%的宽混沌范围。在一个非常低的晶体管计数电路中实现了宽混沌范围内的高混沌复杂性,这适用于许多硬件安全应用,包括随机数生成,混沌逻辑电路等,用于资源受限的设备。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Split-Slope Chaotic Map Providing High Entropy Across Wide Range
This paper presents a novel one-dimensional discrete-time chaotic map. A significantly improved chaotic behavior, compared to already published one-dimensional maps, is achieved in the proposed design by virtue of this non-linear map’s stiffer transfer characteristics. The novelty of the work comes from the proposed methodology of splitting upward and downward slopping mechanisms to gain a stiffer slope in the uni-modal nonlinear circuit. The design methodology is presented with the help of the stability analysis of fixed points, which is generally applicable to a wide variety of nonlinear circuits. The chaotic complexity of the proposed circuit is analyzed with the bifurcation plot, correlation coefficient, and Lyapunov Exponent. The results are compared with reported works to demonstrate a significant improvement. Along with high chaotic complexity, this split-slope chaotic map provides a wide chaotic range covering 100% of the overall region of operation. The high chaotic complexity across a wide chaotic range is achieved with a remarkably low transistor-count circuit which is suitable in many hardware-security applications including, random number generation, chaotic logic circuits, and so on, for resource-constrained devices.
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