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Approximate solution of a piecewise linear–nonlinear oscillator using the homotopy analysis method

机译:使用同型分析方法的分段线性非线性振荡器的近似解

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Most of the piecewise oscillators in engineering fields include nonlinear damping or stiffness and the contained damping or stiffness is strongly nonlinear, but to the authors’ knowledge little attention has been paid to those systems. Thus, in the present paper, a sinusoidal excited piecewise linear–nonlinear oscillator is analyzed. The mathematical model of the oscillator is described by a combination of a linear and a nonlinear differential equation which contains strong nonlinear terms of stiffness. An approximate solution for the oscillator is proposed by using the homotopy analysis method and matching method. The validity of the proposed solution is verified by comparing it with the exact solution. It is found that the approximate solution is in good agreement with the exact solution. The influence of some system parameters on the dynamical behavior of the oscillator is also investigated by the bifurcation diagrams of these parameters. From these bifurcation diagrams, one can observe the motion of the oscillator directly.
机译:工程领域中的大多数分段振荡器包括非线性阻尼或刚度,含有的阻尼或刚度强烈非线性,但对于作者的了解,对这些系统来说已经关注很少。因此,在本文中,分析了一种正弦激发的分段线性 - 非线性振荡器。振荡器的数学模型由线性和非线性微分方程的组合描述,该非线性微分方程包含强的非线性刚度。通过使用同型分析方法和匹配方法提出了一种振荡器的近似解。通过将其与精确解决方案进行比较来验证所提出的解决方案的有效性。发现近似解决方案与确切的解决方案很好。这些参数的分岔图还研究了一些系统参数对振荡器动态行为的影响。从这些分叉图中,人们可以直接观察振荡器的运动。

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