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Circuit Simulation of the Modified Lorenz System

机译:改进的Lorenz系统的电路仿真

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We propose a novel three-dimensional autonomous chaotic system originating from the Lorenz chaotic system. With help of the theoretical analysis and the numerical simulation, the dynamic properties and characterization of this system are studied such as Hopf bifurcation etc.. In particular, fast Lyapunov indicator, small alignment indexes and Lyapunov exponent are used to estimate the effects on the dynamics, of varying parameter that correspond to ordered or chaotic orbits. It is found that increasing value of the parameter r always leads to the extent of chaos. Finally, by Multisim software, a chaotic electronic circuit is designed for the realization of the chaotic attractor, and along with the change of circuital resistor value, it gives almost the same rules of types of orbits as numerical ones.
机译:我们提出了一种新颖的源自Lorenz混沌系统的三维自主混沌系统。借助理论分析和数值模拟,研究了该系统的动力学特性和特性,如Hopf分支等。特别是,使用快速Lyapunov指标,小的对准指数和Lyapunov指数来估计对动力学的影响。 ,具有与有序或混沌轨道相对应的可变参数。已经发现,参数r的值的增加总是导致混乱的程度。最后,通过Multisim软件,设计了一种混沌电子电路来实现混沌吸引子,并随着电路电阻值的变化,给出了与数字轨道几乎相同的规则。

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