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Cordon Pricing Consistent with the Physics of Overcrowding

机译:警戒线定价与人满为患的物理学相一致

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This paper describes the modeling of recurring congestion in a network. It is shown that the standard economic models of marginal cost cannot describe precisely traffic congestion in networks during time-dependent conditions. Following a macroscopic traffic approach, we describe the equilibrium solution for a congested network in the no-toll case. A dynamic model of cordon-based congestion pricing (such as for the morning commute) for networks is developed consistent with the physics of traffic. The paper combines Vickrey's theory with a macroscopic traffic model, which is readily observable with existing monitoring technologies. The paper also examines some policy implications of the cordon-based pricing to treat equity and reliability issues, i.e. in what mobility level a city should choose to operate. An application of the model in a downtown area shows that these schemes can improve mobility and relieve congestion in cities.
机译:本文描述了网络中反复出现的拥塞的建模。结果表明,边际成本的标准经济模型无法准确描述在时间相关的情况下网络中的流量拥塞。遵循宏观流量方法,我们描述了在无收费情况下拥塞网络的平衡解。根据交通的物理原理,开发了基于警戒线的网络拥堵定价(例如,早上通勤)的动态模型。本文将Vickrey的理论与宏观交通模型相结合,可以通过现有的监控技术轻松观察到。本文还研究了基于警戒线定价的一些政策含义,以解决公平性和可靠性问题,即城市应选择在何种移动水平上运营。该模型在市区的应用表明,这些方案可以改善城市交通状况并缓解交通拥堵。

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