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Counteracting the Dynamical Degradation of Digital Chaos by Applying Stochastic Jump of Chaotic Orbits

机译:通过应用混沌轨道随机跳跃来抵消数字混沌的动态劣化

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摘要

The performance of digital chaotic systems in secure communications and cryptographic applications is significantly degraded due to the limited precision of digital computational devices that are used to implement digital chaotic systems. However, regardless of the initial value, the digital chaotic map employed in these applications converges to several periodic orbits. Thus, a periodic orbit search algorithm (POSA) can be designed to accurately locate fixed points and limit cycles. In addition, an effective method based on stochastic jumps of chaotic orbits is proposed to counteract the performance degradation of digital chaos. Numerical simulations were performed to assess the effectiveness and feasibility of the proposed method in terms of auto-correlation, phase space inspection, approximate entropy and periodicity analysis. Furthermore, comparison with other existing methods is presented to show the competitiveness of the proposed scheme. Finally, a pseudorandom bit generator (PRBG), with desirable statistical properties, is constructed for chaos cryptography and other applications.
机译:由于用于实现数字混沌系统的数字计算设备的有限精度,数字混沌系统在安全通信和加密应用中的性能显着降低。然而,无论初始值如何,这些应用中使用的数字混沌图会聚到几个周期性轨道。因此,可以设计周期性轨道搜索算法(POSA)以准确地定位固定点和限制循环。此外,提出了一种基于混沌轨道随机跳跃的有效方法,抵消了数字混沌的性能下降。进行数值模拟以评估所提出的方法在自相关,相空间检查,近似熵和周期性分析方面的有效性和可行性。此外,提出了与其他现有方法的比较以表明提出方案的竞争力。最后,为混沌密码术和其他应用构建具有理想的统计特性的伪随机钻头发生器(PRBG)。

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