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首页> 外文期刊>Journal of Transportation Engineering >Reliability Analysis of Vehicle Stability on Combined Horizontal and Vertical Alignments: Driving Safety Perspective
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Reliability Analysis of Vehicle Stability on Combined Horizontal and Vertical Alignments: Driving Safety Perspective

机译:水平和垂直组合路线下车辆稳定性的可靠性分析:驾驶安全性

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摘要

A driver/vehicle/road closed loop dynamic simulation model considering three-dimensional (3D) alignment was established using Matlab/Simulink for reliability analysis of vehicle stability on the combined horizontal and vertical curve. Pavement friction and vehicle operating speed were considered as the random variables. The point-mass-model based performance function considering the failure model of skidding, vehicle dynamic simulation-based performance function considering the failure model of skidding, and vehicle dynamic simulation-based performance function considering the failure model of rollover were presented, respectively, according to crash types of vehicle occurring on the curve road. Monte Carlo sampling was used to solve reliability. Followed by a parametric study, the results show that the probability of skidding calculated by the vehicle dynamic simulation is larger than that by point-mass model; and the probability of failure decreases with increasing superelevation, while rises with increasing road slope. It indicates that the current horizontal curve design oversimplifies vehicle model, ignores vehicle transient responses, and separates the horizontal and vertical alignments, which could be adverse for vehicles navigating the curved road.
机译:使用Matlab / Simulink建立了考虑三维(3D)对齐的驾驶员/车辆/道路闭环动态仿真模型,用于在水平和垂直组合曲线上对车辆稳定性进行可靠性分析。路面摩擦力和车辆运行速度被认为是随机变量。分别给出了考虑打滑破坏模型的基于点质量模型的性能函数,考虑打滑破坏模型的基于车辆动态模拟的性能函数和考虑了侧翻破坏模型的基于车辆动态模拟的性能函数。使在弯道上发生的车辆类型崩溃。蒙特卡洛采样用于解决可靠性。进行参数研究后,结果表明,通过车辆动力学模拟计算的打滑概率大于基于点质量模型的打滑概率。失效概率随着超高的增加而降低,而随着道路坡度的增加而升高。这表明当前的水平曲线设计过分简化了车辆模型,忽略了车辆的瞬态响应,并分离了水平和垂直路线,这可能不利于在弯道上行驶的车辆。

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