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Improved dynamic design method of ballasted high-speed railway bridges using surrogate-assisted reliability-based design optimization of dependent variables

机译:基于代理辅助可靠性的因变量设计优化改进有砟高速铁路桥梁动态设计方法

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摘要

? 2023 The Author(s)Operating high-speed trains imposes excessive vibrations to bridges raising concerns about their safety. In this context, it was shown that some conventional design methods such as those related to the running safety suffer from a vague scientific background questioning their reliability or optimality. Therefore, the current article is devoted to updating the conventional design methodology, using Reliability-Based Design Optimization (RBDO) to propose the minimum allowable mass and stiffness which assures satisfying the target reliability. These proposed minimum design values can conceptually replace the conventional partial safety factor-based design method for running safety without the need for dynamic analysis. If the mass and stiffness resulting from the control of other limit states meet the proposed minimum values, the desired target reliability for running safety will be assured. This is achieved by adaptively training Kriging meta-models as a surrogate for the computational models decoupling the RBDO problem. In this regard, a new stopping criteria is proposed using mis-classification ratio of the cross-validated model; which reduces the generalization error of the trained meta-model and consequently the estimated failure probability. Moreover, due to the dependence of the design variables, the Copula concept is used to refine the augmented space and reformulate the RBDO problem.
机译:?2023 作者操作高速列车对桥梁施加过度振动,引发对其安全性的担忧。在这种情况下,研究表明,一些传统的设计方法,例如与运行安全相关的方法,存在模糊的科学背景,质疑其可靠性或最佳性。因此,本文致力于更新传统的设计方法,利用基于可靠性的设计优化(RBDO)提出满足目标可靠性的最小允许质量和刚度。这些建议的最小设计值可以在概念上取代传统的基于部分安全系数的运行安全设计方法,而无需进行动态分析。如果控制其他极限状态产生的质量和刚度满足建议的最小值,则将确保运行安全所需的目标可靠性。这是通过自适应训练克里金元模型作为解耦RBDO问题的计算模型的替代物来实现的。对此,利用交叉验证模型的错误分类率提出了一种新的停止标准;这减少了经过训练的元模型的泛化误差,从而降低了估计的失败概率。此外,由于设计变量的依赖性,Copula概念被用于细化增大空间并重新表述RBDO问题。

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