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Generating multiscroll chaotic attractors: Theories, methods and applications

机译:产生多卷混沌吸引子:理论,方法和应用

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Over the last two decades, theoretical design and circuit implementation of various chaos generators have been a focal subject of increasing interest due to their promising applications in various real-world chaos-based technologies and information systems. In particular, generating complex multiscroll chaotic attractors via simple electronic circuits has seen rapid development. This article offers an overview of the subject on multiscroll chaotic attractors generation, including some fundamental theories, design methodologies, circuit implementations and practical applications. More precisely, the article first describes some effective design methods using piecewise-linear functions, cellular neural networks, nonlinear modulating functions, circuit component design, switching manifolds, multifolded tori formation, and so on. Based on different approaches, computer simulation and circuit implementation of various multiscroll chaotic attractors are then discussed in detail, with some theoretical proofs and laboratory experiments presented for verification and demonstration. It is then followed by some discussion on potential applications of multiscroll chaotic attractors, including secure and digital communications, synchronous prediction, random bit generation, and so on. The article is finally concluded with some future research outlooks, putting the important subject into engineering perspective.
机译:在过去的二十年中,由于各种混沌发生器在各种现实世界中基于混沌的技术和信息系统中的应用前景广阔,因此其理论设计和电路实现一直是人们关注的焦点。特别地,通过简单的电子电路产生复杂的多涡卷混沌吸引子已得到迅速发展。本文概述了多卷混沌吸引子的产生,包括一些基本理论,设计方法,电路实现和实际应用。更准确地说,本文首先介绍了使用分段线性函数,细胞神经网络,非线性调制函数,电路组件设计,开关流形,多重花托形成等有效的设计方法。然后,基于不同的方法,详细讨论了各种多滚动混沌吸引子的计算机仿真和电路实现,并提供了一些理论证明和实验室实验以进行验证和演示。然后,对多滚动混沌吸引子的潜在应用进行一些讨论,包括安全和数字通信,同步预测,随机位生成等。文章最后总结了一些未来的研究前景,并将重要的主题纳入了工程学的观点。

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