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Integrated traffic-transit stochastic equilibrium model with park-and-ride facilitiesd

机译:具有停车换乘设施的综合交通—运输随机均衡模型

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We propose an Integrated Stochastic Equilibrium model that considers both private automobile traffic and transit networks to incorporate the interactions between these two modes in terms of travel time and generalized costs. In addition, in the general version of the model, travelers are allowed to switch from personal vehicles to mass transit at specific locations in a park-and-ride scheme. The assignment for traffic equilibrium is based on the Markovian Traffic Equilibrium model of Baillon and Cominetti (2008), whereas the equilibrium of the transit network is represented by the Stochastic Transit Equilibrium model of Cortes et al. (2013). Stochastic travel decisions are made at the node level, thereby avoiding the enumeration of routes or strategies and incorporating various perception and uncertainty issues. We propose a Method-of-Successive-Averages algorithm to calculate an Integrated Stochastic Equilibrium and conduct numerical experiments to highlight the effect of stochasticity on equilibrium flows and travel times. Our experiments show that higher stochasticity implies greater dispersion of equilibrium flows and longer expected travel times. Results on a real network with mode combination and park and ride facilities provide insights regarding the use of park and ride in terms of number and location, potential modal share of the combined mode option under different circumstances, and travel time impact due to the implementation of such park and ride facilities in a real setting. (C) 2016 Elsevier Ltd. All rights reserved.
机译:我们提出了一种综合随机平衡模型,该模型同时考虑了私人汽车交通和公交网络,以结合这两种模式之间的交互作用(包括出行时间和广义成本)。此外,在该模型的通用版本中,允许旅行者在“停车乘车”计划的特定位置从私人车辆切换为大众运输。交通平衡的分配基于Baillon和Cominetti(2008)的马尔可夫交通平衡模型,而交通网络的平衡由Cortes等人的随机交通平衡模型表示。 (2013)。随机旅行决策是在节点级别上做出的,从而避免了对路线或策略的枚举,并纳入了各种感知和不确定性问题。我们提出了一种平均平均算法来计算综合随机平衡,并进行了数值实验,以突出随机性对平衡流量和行程时间的影响。我们的实验表明,较高的随机性意味着平衡流的分散性更大,预期的行程时间更长。在具有模式组合以及停车和乘车设施的真实网络上的结果提供了有关停车和乘车的使用方面的见解,包括数量和位置,在不同情况下组合模式选项的潜在模式份额以及由于实施停车而产生的旅行时间这样的停车和骑行设施是真实的。 (C)2016 Elsevier Ltd.保留所有权利。

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