Numerical analysis and circuit realization of the modified LÜ chaotic system

Guo-Qing Huang, Zuozun Cao
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引用次数: 5

Abstract

A novel three-dimensional autonomous chaotic system from the LÜ chaotic system is given. By using the theoretical analysis and numerical simulation, we provide an insight into the dynamic properties and characterizations of this system, such as Hopf bifurcation. In particular, we are interested in focusing on the dependence of varying parameters on chaos with the help of some chaos indicators including the fast Lyapunov indicator, small alignment indexes and Lyapunov exponent. It is shown that growing the parameter c leads to the extent of chaos. Finally, a chaotic electronic circuit is designed for the realization of the chaotic attractor with aim of Multisim software, and it gives almost the same rules of types of orbits as numerical ones by an alternating value of a circuital resistor.
改进LÜ混沌系统的数值分析与电路实现
从LÜ混沌系统出发,提出了一种新的三维自治混沌系统。通过理论分析和数值模拟,揭示了该系统的动力学特性和Hopf分岔等特征。特别地,我们感兴趣的是通过一些混沌指标,包括快速Lyapunov指标,小对准指标和Lyapunov指数,来关注变化参数对混沌的依赖。结果表明,随着参数c的增大,混沌的程度增大。最后,利用Multisim软件设计了一个混沌电子电路来实现混沌吸引子,并通过电路电阻器的交变值给出了与数值轨道类型几乎相同的规则。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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