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一种基于物理忆阻器的穆图萨米-蔡-吉努克斯系统。

A physical memristor based Muthuswamy-Chua-Ginoux system.

作者信息

Ginoux Jean-Marc, Muthuswamy Bharathwaj, Meucci Riccardo, Euzzor Stefano, Di Garbo Angelo, Ganesan Kaliyaperumal

机构信息

CNRS, CPT, Aix Marseille Univ, Université de Toulon, Marseille, France.

Quantum and Nonlinear Engineering Systems, Plainsboro, NJ, USA.

出版信息

Sci Rep. 2020 Nov 5;10(1):19206. doi: 10.1038/s41598-020-76108-z.

Abstract

In 1976, Leon Chua showed that a thermistor can be modeled as a memristive device. Starting from this statement we designed a circuit that has four circuit elements: a linear passive inductor, a linear passive capacitor, a nonlinear resistor and a thermistor, that is, a nonlinear "locally active" memristor. Thus, the purpose of this work was to use a physical memristor, the thermistor, in a Muthuswamy-Chua chaotic system (circuit) instead of memristor emulators. Such circuit has been modeled by a new three-dimensional autonomous dynamical system exhibiting very particular properties such as the transition from torus breakdown to chaos. Then, mathematical analysis and detailed numerical investigations have enabled to establish that such a transition corresponds to the so-called route to Shilnikov spiral chaos but gives rise to a "double spiral attractor".

摘要

1976年,利昂·蔡证明热敏电阻可被建模为忆阻器件。基于此,我们设计了一个包含四个电路元件的电路:一个线性无源电感器、一个线性无源电容器、一个非线性电阻器和一个热敏电阻,即一个非线性“局部有源”忆阻器。因此,这项工作的目的是在穆图萨米 - 蔡混沌系统(电路)中使用物理忆阻器——热敏电阻,而非忆阻器模拟器。这样的电路已由一个新的三维自治动力系统建模,该系统展现出非常特殊的性质,比如从环面破裂到混沌的转变。随后,数学分析和详细的数值研究证实,这种转变对应于所谓的通向希尔尼科夫螺旋混沌的路径,但会产生一个“双螺旋吸引子”。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1649/7645598/59eaea5146c1/41598_2020_76108_Fig1_HTML.jpg

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