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Identification of Train Wheel Flat Accounting for Measurement and Modeling Uncertainties

机译:确定用于测量和建模不确定性的轮系平整度

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In railway systems, wear-induced wheel flats (out-of-roundness wheel shape) are among the most common local surface defects. They reduce the train ride comfort, increase fatigue risk and raise safety concerns. A good knowledge of wheel flats (presence and position) can help decision makers avoid expensive operating interventions and unnecessary replacement of wheels. Although a significant amount of research has focused on wheel flat detection with the help of various monitoring systems, the quantification of wheel flats without interrupting railway operations is still challenging. Uncertainties are non-negligible in this context. Unfortunately, in most existing wheel-flat-detection methods, uncertainties are rarely taken into account. In this paper, a model-falsification framework is presented to integrate information obtained from measurements with simulation results. Uncertainties associated with both the model and measurements are combined and used to define the criteria to identify flat sizes. The proposed approach has been applied to a field test in Singapore. In the test, rail-pad-force measurement is obtained while a train with a wheel flat is running through the test track. The ranges of values for flat size identified using the proposed methodology include the true observation. It is also shown that the quantification of uncertainties is essential as the predictions that neglect them lead to an underestimation of the flat size.
机译:在铁路系统中,引起磨损的车轮平面(不圆的车轮形状)是最常见的局部表面缺陷之一。它们降低了火车的乘坐舒适性,增加了疲劳风险,并增加了安全隐患。充分了解车轮平面(位置和位置)可以帮助决策者避免昂贵的操作干预和不必要的车轮更换。尽管在各种监视系统的帮助下,大量的研究集中在轮舱检测上,但是在不中断铁路运营的情况下量化轮舱仍是一项挑战。在这种情况下,不确定性是不可忽略的。不幸的是,在大多数现有的车轮漏气检测方法中,很少考虑不确定性。在本文中,提出了一个模型伪造框架,以整合从测量获得的信息与模拟结果。将与模型和测量相关的不确定度合并起来,并用于定义确定平面尺寸的标准。提议的方法已应用于新加坡的现场测试。在测试中,当带有车轮平面的火车通过测试轨道时,获得了轨垫力的测量结果。使用建议的方法确定的单位面积值范围包括真实的观察结果。还表明,不确定性的量化是至关重要的,因为忽略不确定性的预测会导致对单位面积的低估。

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