论文标题
研究2DOF机械影响系统的分叉
Study the Bifurcations of a 2DoF Mechanical Impacting System
论文作者
论文摘要
使用合适的参数设置的撞击机械系统表现出较大的振幅混沌振荡,靠近放牧的撞击表面。这种不确定性背后的原因是平方根的奇异性和危险边界碰撞分叉的发生。在一种自由机械系统的情况下,已经证明这种现象发生在某些条件下。本文提出了在特定要求下的两级自由机械影响系统的不确定性。本文表明,在一种自由机械系统的情况下(例如狭窄的频带,手指形吸引子等),早期报道的现象也发生在两个自由机械影响系统的两个程度中。我们从数值上预测了在特定参数设置下随之而来的窄带混乱。我们还表明,可以在某些参数设置下避免窄带混乱。最后,我们通过构建机械钻机的等效电子电路来实验证明数值预测。
Impacting mechanical systems with suitable parameter settings exhibit a large amplitude chaotic oscillation close to the grazing with the impacting surface. The cause behind this uncertainty is the square root singularity and the occurrence of dangerous border collision bifurcation. In the case of one degree of freedom mechanical systems, it has already been shown that this phenomenon occurs under certain conditions. This paper proposes the same uncertainty of a two-degree freedom mechanical impacting system under specific requirements. This paper shows that the phenomena earlier reported in the case of one degree of freedom mechanical systems (like narrow band chaos, finger-shaped attractor, etc.) also occur in the two degrees of freedom mechanical impacting system. We have numerically predicted the narrowband chaos ensues under specific parameter settings. We have also shown that the narrowband chaos can be avoided under some parameter settings. At last, we demonstrate the numerical predictions experimentally by constructing an equivalent electronic circuit of the mechanical rig.