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Travel time reliability versus safety: A stochastic risk-based acceleration modeling approach

机译:旅行时间可靠性与安全性:基于随机的基于风险的加速度建模方法

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This paper presents a modeling approach to linking stochastic acceleration behavior to travel time reliability on congested freeways. Individual driving behavior is represented by a prospect theory based model that takes into account uncertainty and risk-based evaluation of the gains and losses while following a lead vehicle. Given a set of stimuli (i.e. headways, relative speeds, etc.), the stochastic acceleration model generates acceleration probability distribution functions rather than simple acceleration deterministic values. Such distribution functions may be integrated across the link and across the vehicles at different time steps. Numerical results from a Monte Carlo simulation demonstrate that the proposed microscopic stochastic modeling approach produces a realistic macroscopic traffic flow pattern and can be used to generate travel time distributions. With proper experimental set-up and sensitivity analysis, the travel time distributions may be linked to the drivers' safety-based parameters.
机译:本文介绍了将随机加速度的建模方法连接到拥挤高速公路上的旅行时间可靠性。各个驾驶行为由基于前景理论的模型表示,考虑到牵引车辆的同时考虑基于不确定性和基于风险的评估。给定一组刺激(即头部,相对速度等),随机加速模型产生加速概率分布函数,而不是简单的加速度确定性值。这种分布函数可以在不同时间步骤中集成在链路上和跨越车辆。来自蒙特卡罗模拟的数值结果表明,所提出的微观随机建模方法产生现实的宏观交通流量模式,可用于产生行程分布。通过适当的实验设置和灵敏度分析,旅行时间分布可以与驱动器的基于安全的参数相关联。

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