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Analytical solutions for periodic motions to chaos in nonlinear systems with/without time-delay

机译:具有/不具有时间延迟的非线性系统中周期运动到混沌的解析解

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In this paper, the analytical dynamics of periodic flows to chaos in nonlinear dynamical systems is presented from the ideas of Luo (Continuous dynamical systems, Higher Education Press/L&H Scientific, Beijing/Glen Carbon, 2012)). The analytical solutions of periodic flows and chaos in autonomous systems are discussed through the generalized harmonic balance method, and the analytical dynamics of periodically forced nonlinear dynamical systems is presented as well. The analytical solutions of periodic motions in free and periodically forced vibration systems are presented. The similar ideas are extended to time-delayed nonlinear systems. The analytical solutions of periodic flows to chaos for time-delayed, nonlinear systems with/without periodic excitations are presented, and time-delayed, nonlinear vibration systems will be also discussed. The analytical solutions of periodic flows and chaos are independent of small parameters, which are different from the traditional perturbation methods. The methodology presented herein will provide the accurate analytical solutions of periodic motions to chaos in dynamical systems with/without time-delay. This approach can handle nonlinear dynamical systems with either single time-delay or multiple time-delays.
机译:在本文中,从Luo的观点(连续动力学系统,高等教育出版社/ L&H Scientific,北京/ Glen Carbon,2012年)中提出了非线性动力学系统中周期流到混沌的解析动力学。通过广义谐波平衡法讨论了自治系统中周期流动和混沌的解析解,并给出了周期强迫非线性动力系统的解析动力学。提出了自由和周期性强迫振动系统中周期性运动的解析解。类似的想法扩展到了时滞非线性系统。提出了具有/不具有周期性激励的时滞非线性系统的周期流动到混沌的解析解,并且还将讨论时滞非线性振动系统。周期性流动和混沌的解析解与小参数无关,这与传统的扰动方法不同。本文介绍的方法将为有/无时间延迟的动态系统提供周期运动对混沌的精确分析解决方案。这种方法可以处理具有单个时间延迟或多个时间延迟的非线性动力学系统。

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