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Pareto-Improving User Equilibrium Model Under Tradable Credit and Link Capacity Constraints

机译:在可交易信用证下提高用户均衡模型及链路容量限制

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This chapter presents a user equilibrium model under tradable credit and link capacity constraints (UE-CC) that explicitly considers the characteristics of congested roads in urban traffic network. This model hypothesizes that for each origin-destination (OD) pair no traveler can reduce his/her generalized travel cost by unilaterally changing paths. To obtain the total amount of credits, credit charges on each link and credit cost, this chapter extends the UE-CC model to a Pareto-improving user equilibrium model under tradable credit and link capacity constraints (PUE-CC). This new model uses minimization of system optimal travel time as the objective function and uses the nonlinear complementarity functions of route travel time, route credit cost and route congested delay as the constraints. A relaxation algorithm is developed to solve the PUE-CC model. Numerical examples illustrate the essential ideas of the PUE-CC model and the applicability of the designed solution algorithm.
机译:本章介绍了可交易信用证下的用户均衡模型,并在明确考虑城市交通网络中拥挤道路特征的联系能力约束(UE-CC)。这种型号假设每个原始目的地(OD)对,不通过单方面改变路径来减少他/她的广义旅行成本。要获得贷方总额,对每个链接和信用费用的信贷费用,本章将UE-CC模型扩展到可交易信用证下的帕累托改进用户均衡模型(Pue-CC)。这种新模型使用最小化系统最佳旅行时间作为目标函数,并使用路线旅行时间的非线性互补功能,路由信用成本和路由拥挤延迟作为约束。开发了一种弛豫算法来解决PUE-CC型号。数值示例说明了PUE-CC模型的基本思想和设计的解决方案算法的适用性。

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