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Safety assessment of control design parameters through vehicle dynamics model

机译:通过车辆动力学模型对控制设计参数进行安全评估

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摘要

An existing vehicle dynamics model was utilized to define design parameters up to which steady state cornering conditions apply and consequently lift the restrictions of the point mass model. Aiming to assess critical safety concerns in terms of vehicle skidding, the motion of a passenger car was examined over a range of design speed values paired with control design elements from AASHTO 2011 Design Guidelines as well as certain values of poor pavement friction coefficients.Two distinct cases were investigated; the determination of the maximum attainable constant speed (termed as safe speed) at impending skid conditions as well as the case of comfortable curve negotiation where lower constant speed values were utilized. The overall objective was to define the safety margins for each examined case.From the interaction between road geometry, pavement friction and vehicle characteristics, many interesting findings are reported, where some of them are beyond the confined field of road geometry parameters; such as demanded longitudinal and lateral friction values and horse-power utilization rates. From the road geometry point of view, it was found that control alignments on steep upgrades consisting of low design speed values and combined with poor friction pavements are critical in terms of safety. Such cases should be treated very cautiously through certain actions. These actions include the adoption of acceptable arrangements for the above values regarding new alignments, posted speed management for existing but also scheduling friction improvement programmes more accurately for both cases.
机译:利用现有的车辆动力学模型来定义设计参数,稳态转弯条件适用于该设计参数,从而解除点质量模型的限制。为了评估与车辆打滑有关的关键安全问题,我们对乘用车的运动进行了一系列设计速度值的检验,并结合了AASHTO 2011设计指南中的控制设计元素以及不良路面摩擦系数的某些值。对案件进行了调查;在即将发生的打滑情况下确定最大可达到的恒定速度(称为安全速度),以及使用较低的恒定速度值进行舒适的曲线协商的情况。总体目标是确定每个检查案例的安全裕度。从道路几何形状,路面摩擦和车辆特性之间的相互作用,报告了许多有趣的发现,其中一些超出了道路几何参数的范围;例如所需的纵向和横向摩擦值以及马力利用率。从道路几何形状的角度来看,发现在安全性方面,由低设计速度值以及不良的摩擦路面组成的陡坡升级的控制路线至关重要。应该通过某些行动非常谨慎地对待此类案件。这些措施包括对上述有关新路线的值采用可接受的安排,对现有速度进行公布的速度管理,还针对两种情况更准确地安排摩擦改进计划。

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  • 来源
    《Accident Analysis & Prevention》 |2019年第4期|330-335|共6页
  • 作者单位

    Natl Tech Univ Athens, Dept Transportat Planning & Engn, 5 Heroon Polytechniou Str, GR-15773 Athens, Greece;

    Natl Tech Univ Athens, Dept Transportat Planning & Engn, 5 Heroon Polytechniou Str, GR-15773 Athens, Greece;

    Natl Tech Univ Athens, Dept Transportat Planning & Engn, 5 Heroon Polytechniou Str, GR-15773 Athens, Greece;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Vehicle dynamics model; Safe speed; Friction;

    机译:车辆动力学模型;安全速度;摩擦;

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