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首页> 外文期刊>Mechanical systems and signal processing >A novel model for determining the amplitude-wavelength limits of track irregularities accompanied by a reliability assessment in railway vehicle-track dynamics
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A novel model for determining the amplitude-wavelength limits of track irregularities accompanied by a reliability assessment in railway vehicle-track dynamics

机译:一种确定轨道不平整振幅-波长极限并伴随可靠性的铁路车辆-轨道动力学评估模型

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摘要

The loads on a vehicle and the vibrations transmitted to track infrastructures due to the operation of rolling stocks are mainly determined by the irregularities of the track profile. Hence, it is rather important to ascertain the limits of track irregularities, including amplitudes and wavelengths, to guarantee the dynamic performance of running vehicles and guiding tracks. Furthermore, the operation and management levels as well as irregularity status for different railways are highly dissimilar. Therefore, it is a necessary to conduct a reliability assessment for a specific railway line. In the present work, a large amount of measured track irregularities are concentrated as a group form of the track irregularity power spectrum density. A track irregularity inversion model is presented to obtain realistic representations of track profile deformations with information regarding amplitudes, wavelengths and probabilities. Then, the methodologies for determining the limits of track irregularities and achieving a reliability assessment are presented by introducing the probability density evolution method and development of a Wavelet-Wigner-Hough method. Using the vehicle-track interaction model, numerical studies for confirming the limits of track irregularities and evaluating the reliability of the dynamic performance of the vehicle can be conducted to provide valuable suggestions. This paper offers new possibilities for studying the limit amplitudes, characteristic wavelengths of track irregularities as well as corresponding reliabilities when a railway vehicle runs under different track geometric conditions.
机译:由于机车车辆的运行,车辆上的负载和传递给轨道基础设施的振动主要由轨道轮廓的不规则性决定。因此,确定轨道不规则的极限(包括振幅和波长)非常重要,以保证行驶中的车辆和导轨的动态性能。此外,不同铁路的运营和管理水平以及违规状态高度不同。因此,有必要对特定的铁路线进行可靠性评估。在当前的工作中,大量的测量的轨道不规则集中为轨道不规则功率谱密度的组形式。提出了一种轨道不规则反演模型,以获取有关振幅,波长和概率信息的轨道轮廓变形的真实表示。然后,通过引入概率密度演化方法和小波-维格纳-霍夫方法的发展,提出了确定轨道不规则性极限并实现可靠性评估的方法。使用车辆-轨道相互作用模型,可以进行数值研究以确认轨道不规则性的极限并评估车辆动态性能的可靠性,以提供有价值的建议。本文为研究铁路车辆在不同轨道几何条件下行驶的极限振幅,轨道不规则性的特征波长以及相应的可靠性提供了新的可能性。

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