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A Model for Evaluation of Transport Policies in Multimodal Networks with Road and Parking Capacity Constraints

机译:具有道路和停车容量约束的多式联运网络中交通政策评估模型

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This paper presents a model for evaluation of transport policies in multimodal networks with road and parking capacity constraints. The proposed model simultaneously considers choices of travelers on route, parking location and mode between auto and transit. In the proposed model, it is assumed that auto drivers make a simultaneous route and parking location choice in a user equilibrium manner, and the modal split between auto and transit follows a multinomial logit formulation. A mathematical programming model with capacity constraints on road link and parking facilities is proposed that generates optimality conditions equivalent to the requirements for multimodal network equilibrium. An augmented Lagrangian dual algorithm embedded by partial linearization approach is developed to solve the proposed model. Numerical results on two example networks are presented to illustrate the proposed methodology. The results show that the service level of transit, parking charges, road link and parking capacities, and addition of a new parking location may bring significant impacts on travelers’ behavior and network performance. In addition, transport policies may result in paradoxical phenomenon.
机译:本文提出了一种具有道路和停车位限制的多式联运网络中交通政策评估模型。所提出的模型同时考虑了旅客在路线,停车位置以及自动和公交之间的方式方面的选择。在提出的模型中,假设自动驾驶者以用户平衡的方式同时选择路线和停车位置,并且自动和过境之间的模式拆分遵循多项式logit公式。提出了一种在道路连接和停车设施上具有容量限制的数学规划模型,该模型生成的等效条件等于多式联运网络平衡的要求。开发了一种通过部分线性化方法嵌入的增强拉格朗日对偶算法来求解该模型。给出了两个示例网络的数值结果,以说明所提出的方法。结果表明,公交服务水平,停车收费,道路链接和停车容量以及增加新的停车位置可能会对旅行者的行为和网络性能产生重大影响。此外,运输政策可能导致自相矛盾的现象。

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