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Multi-class time reliability-based congestion pricing model based on a degradable transportation network

机译:基于可降解交通网络的基于时间可靠性的多类拥堵定价模型

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In this study, we present a multi-class time reliability-based user equilibrium model with elastic demand, which is based on a degradable transportation network. Due to the uncertainties in the path travel time induced by random capacity degradation, the model captures the path choice behaviors of travelers in the form of the robust effective path travel time and there is no need for a known travel time probability distribution. By including the heterogeneous degrees of risk aversion among travelers, the equilibrium model can be transformed into an equivalent variational inequality (VI) problem. We also propose a heuristic solution algorithm to solve the VI problem. By taking the VI model as a constraint, a multi-class time reliability-based congestion pricing model is formulated as a mathematical programming with equilibrium constraints problem, which can be solved using the sensitivity analysis-based conjugate sub-gradient projection method. Two numerical examples are provided to illustrate the applications of the proposed models and to demonstrate the efficiency of the solution algorithms.
机译:在这项研究中,我们提出了一个基于弹性时间需求的多类基于时间可靠性的用户均衡模型,该模型基于可降解的运输网络。由于随机容量下降引起的路径旅行时间的不确定性,该模型以稳健的有效路径旅行时间的形式捕获了旅行者的路径选择行为,因此不需要已知的旅行时间概率分布。通过将旅行者之间的风险规避异质程度包括在内,可以将均衡模型转化为等效的变分不等式(VI)问题。我们还提出了启发式求解算法来解决VI问题。以VI模型为约束条件,将基于时间可靠性的多类拥堵定价模型建立为具有均衡约束问题的数学规划,可以采用基于灵敏度分析的共轭子梯度投影方法求解。提供了两个数值示例来说明所提出模型的应用并证明求解算法的效率。

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