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A Systematic Methodology for Constructing Hyperchaotic Systems With Multiple Positive Lyapunov Exponents and Circuit Implementation

机译:具有多个正Lyapunov指数的超混沌系统的系统化方法和电路实现

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This paper aims at developing a systematic methodology for constructing continuous-time autonomous hyperchaotic systems with multiple positive Lyapunov exponents. To overcome the essential difficulty in balancing between local instability and global convergence, this paper initiates a new methodology for designing a dissipative hyperchaotic system with a desired number of positive Lyapunov exponents. A general design principle and the corresponding implementation steps are then developed. Three representative examples are shown to validate the proposed principle and implementation scheme. Moreover, a hyperchaotic circuit is constructed to verify a 6-dimensional hyperchaotic system with four positive Lyapunov exponents. Comparing with the traditional trial-and-error approach, the proposed method can design various hyperchaotic systems with any desired number of positive Lyapunov exponents in a systematic way.
机译:本文旨在开发一种系统的方法,以构造具有多个正Lyapunov指数的连续时间自治超混沌系统。为了克服在局部不稳定和全局收敛之间取得平衡的基本困难,本文提出了一种新的方法,用于设计具有期望数量的正Lyapunov指数的耗散超混沌系统。然后,开发了一般设计原理和相应的实现步骤。展示了三个具有代表性的示例,以验证所提出的原理和实施方案。此外,构造了一个超混沌电路来验证具有四个正Lyapunov指数的6维超混沌系统。与传统的试错法相比,该方法可以系统地设计具有任意数量的正Lyapunov指数的各种超混沌系统。

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