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Dynamic bifurcation and strange nonchaos in a two-frequency parametrically driven nonlinear oscillator

机译:两频参量驱动的非线性振荡器中的动态分叉和奇异非混沌

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A periodically forced series LCR circuit with Chua's diode as a nonlinear element exhibits slow passage through Hopf bifurcation. This slow passage leads to a delay in the Hopf bifurcation. The delay in this bifurcation is a unique quantity and it can be predicted using various numerical analysis. We find that when an additional periodic force is added to the system, the delay in bifurcation becomes chaotic which leads to an unpredictability in bifurcation delay. Further, we study the bifurcation of the periodic delay to chaotic delay in the slow passage effect through strange nonchaotic delay. We also report the occurrence of strange nonchaotic dynamics while varying the parameter of the additional force included in the system. We observe that the system exhibits a hitherto unknown dynamical transition to a strange nonchaotic attractor. With the help of Lyapunov exponent, we explain the new transition to strange nonchaotic attractor and its mechanism is studied by making use of rational approximation theory. The birth of SNA has also been confirmed numerically, using Poincare maps, phase sensitivity exponent, the distribution of finite-time Lyapunov exponents and singular continuous spectrum analysis. (C) 2017 Elsevier B.V. All rights reserved.
机译:具有Chua二极管作为非线性元件的周期性强制串联LCR电路在Hopf分叉中的通过速度较慢。这种缓慢的通过导致霍普夫分叉的延迟。分叉中的延迟是一个独特的数量,可以使用各种数值分析来预测。我们发现,当向系统添加额外的周期性力时,分叉的延迟变得混乱,这导致了分叉延迟的不可预测性。此外,我们研究了通过奇怪的非混沌延迟在慢速通过效应中周期性延迟到混沌延迟的分歧。我们还报告了奇怪的非混沌动力学的发生,同时改变了系统中包括的附加力的参数。我们观察到,该系统展现了迄今为止未知的向奇异的非混沌吸引子的动力过渡。借助李雅普诺夫指数,我们解释了向奇异非混沌吸引子的新跃迁,并利用有理逼近理论研究了其机理。还使用Poincare映射,相位灵敏度指数,有限时间Lyapunov指数分布和奇异连续谱分析在数值上证实了SNA的诞生。 (C)2017 Elsevier B.V.保留所有权利。

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