Stochastic and Resonant Layers in a Periodically Driven Pendulum

A. Luo, R. Han
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Abstract

The stochastic and resonant layers in a periodically driven pendulum are investigated in this paper. The analytical solutions and nonlinear natural frequencies of the non-driven pendulum are first derived, and then the energy increments in the stochastic and resonant layers for the driven pendulum are approximated by the work done by the external excitation along the heteroclinic and resonant orbits, respectively. From these results, the approximate analytical conditions for the predictions of stochastic and resonant layers are constructed. Based on these conditions, input parameters are computed for the numerical simulations of the stochastic and resonant layers. The stochastic and resonant layers associated with the librational and rotational motions are illustrated via the Poincare mapping sections.
周期驱动摆中的随机层和共振层
研究了周期驱动摆的随机层和共振层。首先推导了非驱动摆的解析解和非线性固有频率,然后分别用外激励沿异斜轨道和共振轨道所做的功近似求得了驱动摆在随机层和共振层的能量增量。根据这些结果,构造了预测随机层和共振层的近似解析条件。在此基础上,计算了随机层和谐振层数值模拟的输入参数。与振动和旋转运动相关的随机和共振层通过庞加莱映射部分加以说明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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