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Pricing and hierarchical logit-based mode choice models in a multimodal corridor with trip-chain costs

机译:具有跳闸链成本的多模式走廊中基于分层基于标准的模式选择模型

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This paper proposes four pricing models for a multimodal corridor transportation system with trip-chain costs. The transportation system comprises a subway parallel to a bottleneck-constrained highway between a residential area and a workplace. Commuters can get their destination by either auto mode or transit mode only; besides these, they can first drive to the bottleneck, park there and then take subway to the destination. The solutions of these four models correspond to the hierarchical logit-based stochastic equilibria among travel costs and trip benefits with different optimization objectives. It is shown that when transit and park-and-ride place are operated by government and parking lot at working area belongs to the private enterprise, lower transit fares and higher parking fee in the central area can effectively encourage P&R mode choice, increase transit attraction and maximize the total net benefit of the system. Numerical results support the on-going differentiated parking charge policy in Beijing.
机译:本文提出了四种具有跳闸链成本的多式联漫运输系统的定价模型。运输系统包括平行于住宅区和工作场所之间的瓶颈约束高速公路的地铁。通勤者只能通过自动模式或传输模式获得目的地;除此之外,他们可以首先开车到瓶颈,在那里公园,然后乘坐地铁到目的地。这四种模型的解决方案对应于旅行成本和具有不同优化目标的旅行成本和旅行效益之间的分层基于Logit的随机均衡。结果表明,当政府和停车场运营的运输和停车场,在工作区属于私营企业,中央地区的下部传输票价和更高的停车费可以有效鼓励P&R模式选择,增加过境吸引力并最大限度地提高系统的总净利益。数值结果支持北京正在进行的差异化停车处。

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