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Optimal extended homotopy analysis method for Multi-Degree-of-Freedom nonlinear dynamical systems and its application

机译:多自由度非线性动力学系统的最佳扩展同伦分析方法及其应用

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In this paper, the optimal extended homotopy analysis method (OEHAM) is introduced to deal with the damped Duffing resonator driven by a van der Pol oscillator, which can be described as a complex Multi-Degree-of-Freedom (MDOF) nonlinear coupling system. Ecumenically, the exact solutions of the MDOF nonlinear coupling systems are difficult to be obtained, thus the development of analytical approximation becomes an effective and meaningful approach to analyze these systems. Compared with traditional perturbation methods, HAM is more valid and available, and has been widely used for nonlinear problems in recent years. Hence, the method will be chosen to study the system in this article. In order to acquire more suitable solutions, we put forward HAM to the OEHAM. For the sake of verifying the accuracy of the above method, a series of comparisons are introduced between the results received by the OEHAM and the numerical integration method. The results in this article demonstrate that the OEHAM is an effective and robust technique for MDOF nonlinear coupling systems. Besides, the presented methods can also be broadly used for various strongly nonlinear MDOF dynamical systems.
机译:本文介绍了一种最佳扩展同伦分析方法(OEHAM)来处理由范德波尔振荡器驱动的阻尼Duffing谐振器,该谐振器可以描述为复杂的多自由度(MDOF)非线性耦合系统。大体上,难以获得MDOF非线性耦合系统的精确解,因此解析近似的发展成为分析这些系统的有效且有意义的方法。与传统的摄动方法相比,HAM更为有效和可用,并且近年来已广泛用于非线性问题。因此,本文将选择该方法来研究系统。为了获得更合适的解决方案,我们向OEHAM提出了HAM。为了验证上述方法的准确性,在OEHAM收到的结果和数值积分方法之间进行了一系列比较。本文中的结果证明,OEHAM是一种用于MDOF非线性耦合系统的有效而强大的技术。此外,所提出的方法还可以广泛地用于各种强非线性MDOF动力系统。

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