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Reliability analysis and reliability-based design optimization of roadway horizontal curves using a first-order reliability method

机译:基于一阶可靠性方法的巷道水平曲线可靠性分析及基于可靠性的设计优化

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摘要

This article presents reliability analysis and reliability-based optimization of roadway minimum radius design based on vehicle dynamics, mainly focusing on exit ramps and interchanges. The performance functions are formulated as failure modes of vehicle rollover and sideslip. To accurately describe the failure modes, analytical models for rollover and sideslip are derived considering nonlinear characteristics of vehicle behaviour using the commercial software TruckSim. The probability of an accident is evaluated using the first-order reliability method and numerical studies are conducted using a single-unit truck model. To propose a practical application for the study, the reliability analysis for the minimum radius recommended by American Association of State Highway and Transportation Officials is conducted. The results show that, even if there are deviations from assumed design conditions of the current design guideline, the proposed design method can guarantee given target margins of safety against rollover and sideslip. Based on the reliability analysis, reliability-based design optimization is carried out and the results indicate new recommendations for minimum radii satisfying given target reliability levels.
机译:本文介绍了基于车辆动力学的道路最小半径设计的可靠性分析和基于可靠性的优化,主要集中在出口匝道和立交处。性能函数被公式化为车辆侧翻和侧滑的故障模式。为了准确描述故障模式,使用商用软件TruckSim考虑车辆行为的非线性特征,得出了侧翻和侧滑的分析模型。使用一阶可靠性方法评估事故的可能性,并使用单辆卡车模型进行数值研究。为了建议该研究的实际应用,进行了美国国家公路和运输官员协会推荐的最小半径的可靠性分析。结果表明,即使与当前设计准则的假定设计条件存在偏差,所提出的设计方法也可以保证给定的目标安全边际,以防侧翻和侧滑。基于可靠性分析,进行了基于可靠性的设计优化,结果为满足给定目标可靠性水平的最小半径提出了新的建议。

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