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首页> 外文期刊>Chaos, Solitons and Fractals: Applications in Science and Engineering: An Interdisciplinary Journal of Nonlinear Science >Theoretical design and circuit implementation of novel digital chaotic systems via hybrid control
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Theoretical design and circuit implementation of novel digital chaotic systems via hybrid control

机译:通过混合控制的新型数字混沌系统的理论设计和电路实现

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Chaos is a paradigm shift of all science, which provides a collection of concepts and methods to analyze a novel behavior that can arise in a wide range of disciplines. However, most of researches in simulations and applications of chaos are performed on finite-state automata, which inevitably causes chaos to collapse. Here we present a hybrid model by controlling digital system with continuous chaotic system to construct chaos on finite-state automata. A new concept and method named Generalized Symbolic Dynamics (GSD) is proposed to target the hybrid system. Based on GSD, a rigorous proof is given that the controlled digital system is chaotic in the sense of Devaney. Moreover, analog-digital hybrid circuit is built for the digital chaotic system. Finally, a simple pseudorandom number generator is designed as a proof of concept. Results show that the proposed generator has good performance for cryptography. Such digital chaotic systems, which are not subject to degradation, could pave the way for widespread applications of chaos. (c) 2020 Elsevier Ltd. All rights reserved.
机译:Chaos是所有科学的范式转变,它提供了一系列概念和方法,以分析一种在广泛的学科中可能出现的新行为。然而,大多数模拟和混乱应用的研究都对有限状态自动机进行,这不可避免地导致混乱崩溃。这里我们通过控制具有连续混沌系统的数字系统来介绍混合模型,以在有限状态自动机上构建混沌。提出了一种名为Genered Symbolic Dynamics(GSD)的新概念和方法来定位混合系统。基于GSD,赋予了严格的证据,控制数字系统在德文义的意义上是混乱的。此外,模拟 - 数字混合电路是为数字混沌系统而构建的。最后,简单的伪随机数发生器被设计为概念证明。结果表明,该提出的发电机对加密性具有良好的性能。这种数字混沌系统不受退化可能会为混乱的广泛应用铺平道路。 (c)2020 elestvier有限公司保留所有权利。

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