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Chaos entanglement: A new approach to generate chaos

机译:混沌纠缠:产生混沌的新方法

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摘要

A new approach to generate chaotic phenomenon, called chaos entanglement, is proposed in this paper. The basic principle is to entangle two or multiple stable linear subsystems by entanglement functions to form an artificial chaotic system such that each of them evolves in a chaotic manner. Firstly, a new attractor, entangling a two-dimensional linear subsystem and a one-dimensional one by sine function, is presented as an example. Dynamical analysis shows that both entangled subsystems are bounded and all equilibra are unstable saddle points when chaos entanglement is achieved. Also, numerical computation shows that this system has one positive Lyapunov exponent, which implies chaos. Furthermore, two conditions are given to achieve chaos entanglement. Along this way, by different linear subsystems and different entanglement functions, a variety of novel chaotic attractors have been created and abundant complex dynamics are exhibited. Our discovery indicates that it is not difficult any more to construct new artificial chaotic systemsetworks for engineering applications such as chaos-based secure communication. Finally, a possible circuit is given to realize these new chaotic attractors.
机译:提出了一种新的产生混沌现象的方法,称为混沌纠缠。基本原理是通过纠缠函数纠缠两个或多个稳定的线性子系统,以形成一个人工混沌系统,从而使每个子系统都以混沌方式演化。首先,提出了一个新的吸引子,它通过一个正弦函数将一个二维线性子系统和一个一维吸引子纠缠在一起。动力学分析表明,实现混沌纠缠时,两个纠缠子系统都是有界的,所有平衡点都是不稳定的鞍点。而且,数值计算表明该系统具有一个正Lyapunov指数,这意味着混沌。此外,给出了实现混沌纠缠的两个条件。通过这种方式,通过不同的线性子系统和不同的纠缠函数,创造了各种新颖的混沌吸引子,并展现了丰富的复杂动力学。我们的发现表明,为工程应用(例如基于混沌的安全通信)构建新的人工混沌系统/网络不再困难。最后,给出了实现这些新的混沌吸引子的可能电路。

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