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Box-Cox transformations of terms nesting the Trans-Log: the example of rail infrastructure maintenance cost

机译:嵌套Trans-Log的术语的Box-Cox转换:铁路基础设施维护成本的示例

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摘要

We explore how the Trans-Log (TL) can be nested in Box-Cox transformed terms and show that a particular specification previously defined, but not fully tested, within the European CATRIN consortium (Gaudry & Quinet, 2010), the Unrestricted Generalized Box-Cox (U-GBC), constitutes a proper incarnation of the Generalized Flexible Quadratic class (Blackorby et al. (1977) and nests a number of more or less known intermediate Box-Cox-inspired partial generalizations of the TL, as well as the target TL itself.After a brief rail cost litterature review, our detailed references to such intermediate model specifications making partial use of Box-Cox transformations are focused on examples developed since 2002 using cross-sectional data, shown to differ profoundly from their ancestor aggregate time-series firm-wide explanations of total or of current maintenance rail cost published before 2002. Notably, the TL, devoid of prices, has since 2002 become a rail engineering degradation cost model under an unchanged econometric terminological form garb on which we dwell.We estimate three main rail maintenance cost model specifications strictly nesting the TL from real 1999 France-wide segment network data and compare their improved log likelihood values under different engineering hypotheses concerning physical interactions among four rail Traffic types and four track Quality characteristics.We find the Trans-Log to be an inadequate model of railway damage because physical interactions among track Quality indicators and train Traffic types are not of log-log form but of other forms better handled by common flexible Box-Cox Transformations, twelve of which are estimated in our most general U-GBC specification, all but one actually differing from the logarithmic case. And, of course, not all physical interactions turn out to matter in the explanation of degradation cost: track Quality-Quality interactions, for instance, are of nugatory importance.
机译:我们探索了如何将Trans-Log(TL)嵌套在Box-Cox转换后的术语中,并显示了先前在欧洲CATRIN联盟(Gaudry&Quinet,2010)中定义的特定规范,但尚未经过全面测试,即不受限制的通用框-Cox(U-GBC)构成了广义柔性二次类的适当化身(Blackorby等(1977),并嵌套了许多或多或少的中间Box-Cox启发的TL部分泛化,以及经过简短的铁路成本文献回顾后,我们对部分使用Box-Cox变换的中间模型规范的详细引用集中于2002年以来使用横截面数据开发的示例,这些示例显示出与它们的祖先集合有很大不同公司在2002年之前发布的有关总维修费用或当前维修铁路成本的时间序列说明。值得注意的是,没有价格的TL自2002年以来已成为铁路工程退化成本模型和我们估计了三个主要的铁路维护成本模型规格,这些需求严格地根据真实的1999年法国全网段网络数据嵌套了TL,并在涉及四个物理相互作用的不同工程假设下比较了它们的改进对数似然值。铁路交通类型和四个轨道的质量特征。我们发现Trans-Log不能作为铁路破坏的充分模型,因为轨道质量指标和火车之间的物理相互作用交通类型不是对数对数形式,而是其他形式,可以通过通用柔性更好地处理。 Box-Cox变换,其中12个是在我们最通用的U-GBC规范中估算的,除了一个实际上与对数情况不同。而且,当然,并不是所有的物理相互作用都对降解成本的解释产生影响:例如,跟踪质量-质量相互作用具有重要的意义。

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    Gaudry Marc; Quinet Emile;

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  • 年度 2016
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  • 正文语种 en
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