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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 >An enhanced multi-wing fractional-order chaotic system with coexisting attractors and switching hybrid synchronisation with its nonautonomous counterpart
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An enhanced multi-wing fractional-order chaotic system with coexisting attractors and switching hybrid synchronisation with its nonautonomous counterpart

机译:具有共存吸引子的增强多翼分数顺序混沌系统,并与其非自治对手切换混合同步

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摘要

This paper presents a new chaotic system that exhibits a two wing (2W) chaotic attractor in its integer order dynamics, three-wing (3W) and four-wing (4W) chaotic attractors in its fractional-order (FO) dynamics, and an eight-wing (8W) attractor in its nonautonomous fractional dynamics. An interesting feature of the proposed system is that two distinct periodic orbits coexist with a strange attractor that gradually evolves into a 4W attractor. The asymmetry, dissimilarity and topological structure of this proposed system with respect to those available in literature, manifest increased irregularity, which in turn indicate more chaos. Besides, the authors have drawn its comparison with various well-known fractional-order chaotic systems (FOCS)s to prove its enhanced features in terms of higher Lyapunov Exponent, fractional order orbital velocities, bandwidth, density, range of dynamical behaviour, etc. A control scheme is proposed to enable switching hybrid synchronisation between the 8W nonautonomous FOCS and the 4W autonomous FOCS, using the former as master and the latter as slave. This work throws light on the potential practical applicability of the proposed system by designing a circuit using minimum circuit components possible, thus signifying the objectives of the paper are finally achieved. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文提出了一种新的混沌系统,其在其整数动态,三翼(3W)和四翼(4W)混沌吸引子上展示了两个翼(2W)混沌吸引子,其分数顺序(FO)动态和一个八翼(8W)在其非编程分数动力学中的吸引子。所提出的系统的一个有趣特征是,两个不同的周期性轨道与奇怪的吸引子共存,逐渐发展成为4W吸引子。这一提出的系统的不对称,不一致和拓扑结构关于文学中可用的那些,表现出不规则的增加,又表明了更多的混乱。此外,作者对各种着名的分数顺序混沌系统(FOCS)S比较,以证明其在更高的Lyapunov指数,分数阶轨道速度,带宽,密度,动态行为范围等方面的增强功能。提出了一种控制方案,以便在8W非自主Focs和4W自主Focs之间切换混合同步,使用前者作为主设备和后者作为从属奴隶。这项工作通过使用最小电路元件设计电路来抛出所提出的系统的潜在实际适用性,因此最终实现了纸张的目标。 (c)2017 Elsevier Ltd.保留所有权利。

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