Continuous-time point-queue models in dynamic network loading (original) (raw)

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Continuous-time dynamic user equilibrium with departure-time choice and capacitated queue Cover Page

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An approach to modelling time-varying flows on congested networks Cover Page

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Spillback congestion in dynamic traffic assignment: A macroscopic flow model with time-varying bottlenecks Cover Page

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Submission to the DTA2012 Special Issue: Convergence of Time Discretization Schemes for Continuous-Time Dynamic Network Loading Models Cover Page

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Dynamic traffic assignment with non separable link cost functions and queue spillovers Cover Page

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Continuos dinamic network loading models Cover Page

Model of Traffic Flow Capacity Constraint through Nodes for Dynamic Network Loading with Queue Spillback

Transportation Research Record: Journal of the Transportation Research Board, 2011

In dynamic network traffic loading models with queues spilling back in the links, if one or more links departing a node have demand exceeding capacity, a node model is required to unambiguously constrain the flows exiting the links approaching that node. Basic principles of traffic flow and causality impose requirements on macroscopic node models that have only been recently articulated. Only one existing model fully conforms, but it has a weakness that is identified and discussed. This paper develops a new conforming model from a particular behavior of traffic: vehicles wait their turns to proceed and consume additional approach capacity due to waiting. The model's derivation from behavior distinguishes this model from previous ones that allocate capacity by proportionality rules. A simple, efficient, and convergent solution algorithm for the new model is provided.

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Model of Traffic Flow Capacity Constraint through Nodes for Dynamic Network Loading with Queue Spillback Cover Page

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Equilibrium in Capacitated Network Models with Queueing Delays, Queue-storage, Blocking Back and Control Cover Page

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Convergence of Time Discretization Schemes for Continuous-Time Dynamic Network Loading Models Cover Page

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Approximate network loading and dual-time-scale dynamic user equilibrium Cover Page