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Bifurcation routes to chaos of 2-coupled oscillators and stabilization of unstable periodic orbits embedded in the chaotic attractor

机译:2耦合振荡器的分叉路径和混沌吸引子中嵌入的不稳定周期轨道的稳定性

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This paper investigates two bifurcation routes to chaos observed in a 2-coupled oscillator system. This system has two nonlinear oscillators with fifth-power nonlinear conductance and third-power nonlinear inductance, and hence can be represented as a 4th-order nonlinear autonomous system. In particular, this system has a positive parameter "/spl epsiv/" showing the degree of nonlinearity. We have found out two distinct bifurcation routes to chaos starting from the same phase and the reverse phase attractors as /spl epsiv/ is increased. Further, we apply OGY-method to stabilize some unstable periodic orbits embedded in the chaotic attractor.
机译:本文研究了在2耦合振荡器系统中观察到的两条产生混沌的分岔路径。该系统具有两个非线性振荡器,分别具有五次方非线性电导和三次方非线性电感,因此可以表示为四阶非线性自治系统。特别地,该系统具有显示非线性程度的正参数“ / spl epsiv /”。我们发现,随着/ spl epsiv /的增加,从同相和反相吸引子开始,出现了两条截然不同的分叉路径,导致混乱。此外,我们应用OGY方法来稳定嵌入在混沌吸引子中的一些不稳定周期轨道。

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