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Modelling the evolution of ballasted railway track geometry by a two-level piecewise model

机译:用双层分段模型建模镇流器铁路轨道几何的演变

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Accurate prediction and efficient simulation of the evolution of track geometry condition is a prerequisite for planning effective railway track maintenance. In this regard, the degradation and tamping effect should be equipped with proper and efficient probabilistic models. The possible correlation induced by the spatial structure also needs to be taken into account when modelling the track geometry degradation. To address these issues, a two-level piecewise linear model is proposed to model the degradation path. At the first level, the degradation characteristic of each track section is modelled by a piecewise linear model with known break points at the tamping times. At the second level, Autoregressive Moving Average models are used to capture the spatial dependences between the parameters of the regression lines indexed by their locations. To illustrate the model, a comprehensive case study is presented using data from the Main Western Line in Sweden.
机译:准确的预测和高效模拟轨道几何状况的演变是规划有效铁路轨道维护的先决条件。 在这方面,降解和夯实效果应配备适当高效的概率模型。 在建模轨道几何劣化时,还需要考虑由空间结构引起的可能相关性。 为了解决这些问题,提出了一种两级分段线性模型来模拟劣化路径。 在第一级别,每个轨道部分的劣化特性由分段线性模型建模,其中夯实时间具有已知的断点。 在第二级,自回归移动平均模型用于捕获由其位置索引的回归线的参数之间的空间依赖性。 为了说明该模型,使用瑞典主要西线的数据呈现了全面的案例研究。

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