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Complementarity formulations for the cell transmission model based dynamic user equilibrium with departure time choice, elastic demand and user heterogeneity
Authors:Lanshan Han Satish Ukkusuri  Kien Doan
Institution:School of Civil Engineering, Purdue University, West Lafayette, IN 47907-2051, USA
Abstract:In this paper we formulate the dynamic user equilibrium problem with an embedded cell transmission model on a network with a single OD pair, multiple parallel paths, multiple user classes with elastic demand. The formulation is based on ideas from complementarity theory. The travel time is estimated based on two methods which have different transportation applications: (1) maximum travel time and (2) average travel time. These travel time functions result in linear and non-linear complementarity formulations respectively. Solution existence and the properties of the formulations are rigorously analyzed. Extensive computational experiments are conducted to demonstrate the benefits of the proposed formulations on various test networks.
Keywords:User equilibrium  Cell transmission model  Complementarity  Departure time  Heterogeneous users  Demand elasticity
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