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Non periodic oscillations bistability coexistence of chaos and hyperchaos in the simplest resistorless Op-Amp based Colpitts oscillator

机译:最简单的基于无电阻运算放大器的Colpitts振荡器中的非周期性振荡双稳态混沌和超混沌共存

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摘要

In the framework of a project on simple circuits with unexpected high degrees of freedom, we report an autonomous microwave oscillator made of a CLC linear resonator of Colpitts type and a single general purpose operational amplifier (Op-Amp). The resonator is in a parallel coupling with the Op-Amp to build the necessary feedback loop of the oscillator. Unlike the general topology of Op-Amp-based oscillators found in the literature including almost always the presence of a negative resistance to justify the nonlinear oscillatory behavior of such circuits, our zero resistor circuit exhibits chaotic and hyperchaotic signals in GHz frequency domain, as well as many other features of complex dynamic systems, including bistability. This simplest form of Colpitts oscillator is adequate to be used as didactic model for the study of complex systems at undergraduate level. Analog and experimental results are proposed.
机译:在一个具有出乎意料的高自由度的简单电路的项目框架中,我们报告了一个由Colpitts型CLC线性谐振器和一个通用运算放大器(Op-Amp)构成的自主微波振荡器。谐振器与运算放大器并联耦合,以建立振荡器的必要反馈环路。与文献中发现的基于运算放大器的振荡器的一般拓扑结构(几乎总是包含负电阻来证明此类电路的非线性振荡行为不同)不同,我们的零电阻电路在GHz频域中也表现出混沌和超混沌信号与复杂动态系统的许多其他功能一样,包括双稳态。这种最简单的Colpitts振荡器形式足以用作在大学层次上研究复杂系统的教学模型。提出了模拟和实验结果。

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