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A fixed-point model and algorithms for simulating urban freight distribution in a multimodal context with crossed congestion

机译:一种定点模型和算法,用于模拟交叉拥挤的多模态环境下的城市货运分布

摘要

Urban road networks are generally shared by at least three different kinds of vehicles: private cars, buses and freight vehicles. These vehicle categories influence their travel times reciprocally (the crossed congestion phenomenon). Hence, in order to simulate the performance of urban road networks, it is worth developing a multimodal assignment model that takes into account the effects of reciprocal influences among vehicles on user travel choices (at least on mode and path choices). In this paper, we extend the model proposed in a previous paper (D’Acierno et al., 2002) to the case of urban freight distribution simulation, considering crossed congestion among all considered transportation systems. The proposed model is tested on a real dimension network adopting three algorithmic approaches (external, internal and hyper-network) for its solution and comparing their performances in terms of calculation times and result reliability. Finally, we discuss the effects of crossed congestion on freight path choices and the influences of freight vehicle presence on (road and transit) user choices.
机译:通常,至少有三种不同类型的车辆共享城市道路网络:私家车,公共汽车和货运车辆。这些车辆类别相互影响其行驶时间(交叉拥塞现象)。因此,为了模拟城市道路网络的性能,值得开发一种多模式分配模型,该模型应考虑到车辆之间的相互影响对用户出行选择(至少对模式和路径选择)的影响。在本文中,考虑到所有考虑的运输系统之间的交叉拥堵,我们将先前论文(D’Acierno等,2002)中提出的模型扩展到城市货运分布模拟的情况。所提出的模型在采用三种算法方法(外部,内部和超网络)的真实尺寸网络上进行了测试,并在计算时间和结果可靠性方面比较了它们的性能。最后,我们讨论了交叉拥堵对货运路径选择的影响以及货运车辆的存在对(道路和过境)用户选择的影响。

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