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Vibration modeling and position-dependent analysis of spatial trajectory roller coaster

机译:空间轨迹过山车的振动建模和位置相关分析

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A vibration quarter-carbody model of a roller coaster running on a spatial trajectory is derived based upon the motion parameters, vertical acceleration, angular velocity, angular attitude, and transient position. These motion parameters are acquired from an ADAMS virtual prototype. The vibration response of the carbody is obtained by solving the differential equations with variable coefficients. Besides, the validity of both the ADAMS virtual prototype and the vibration model is verified by the simulated results versus the actually measured ones. Furthermore, a method, called as space frequency characteristics, is proposed to investigate the relation between the carbody vibration and the motion parameter of roller coaster, which reveals that the carbody vibration is related to its transient position and the influence of the randomness of the motion parameters on the vibration is eliminated. This research is supposed to be helpful for the fault diagnosis of roller coaster by considering both the vibration and motion signals.
机译:基于运动参数,垂直加速度,角速度,角姿态和瞬态位置,得出了在空间轨迹上运行的过山车的振动四分之一车身模型。这些运动参数是从ADAMS虚拟原型获取的。通过求解具有可变系数的微分方程,可以获得车身的振动响应。此外,通过仿真结果和实际测量结果验证了ADAMS虚拟样机和振动模型的有效性。此外,提出了一种称为空间频率特性的方法来研究车身振动与过山车运动参数之间的关系,该方法表明车身振动与其瞬态位置和运动随机性的影响有关。消除了关于振动的参数。这项研究应该通过考虑振动和运动信号对过山车的故障诊断有所帮助。

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