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Chaotic vibration and control in nonlinear half-vehicle suspension under consecutive humps excitation

机译:连续驼峰激励下非线性半车辆悬架的混沌振动与控制

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摘要

Complicated dynamic behavior of nonlinear Four degree-of-freedom (DOF) semi-vehicle model will happen under pavement roughness incentive. In this paper, the consecutive speed control humps (SCHs) dynamic excitation function is presented. And the model can be analyzed by velocity bifurcation diagram, Poincaré map, phase diagram and power spectrum. The range of velocity is obtained under chaos vibration by researching vibration characteristic of the system. Numerical results indicate that the chaotic vibration response may be appear by the consecutive SCHs. Meanwhile, paper proposes direct variable feedback control method, and analyze the control effect of different the feedback gain and the delay feedback control. The results will help for dynamic characteristic analysis of vehicles and the design of the continuous speed bumps.
机译:在路面不平整激励下,会出现非线性四自由度(DOF)半车辆模型的复杂动态行为。在本文中,提出了连续速度控制驼峰(SCH)动态激励函数。通过速度分岔图,庞加莱图,相位图和功率谱可以对模型进行分析。通过研究系统的振动特性,可以得到在混沌振动下的速度范围。数值结果表明,连续的SCH可能会出现混沌振动响应。同时,提出了直接变量反馈控制方法,并分析了不同反馈增益和延迟反馈控制的控制效果。这些结果将有助于车辆的动态特性分析和连续减速带的设计。

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