A dynamic traffic assignment model for a continuum transportation system.

Author(s)
Jiang, Y. Wong, S.C. Ho, H.W. Zhang, P. Liu, R. & Sumalee, A.
Year
Abstract

A predictive continuum dynamic user-optimal (PDUO-C) model is formulated in this study to investigate the dynamic characteristics of traffic flow and the corresponding route-choice behavior of travelers within a region with a dense urban road network. The modeled region is arbitrary in shape with a single central business district (CBD) and travelers continuously distributed over the region. Within this region, the road network is represented as a continuum and travelers patronize a two-dimensional continuum transportation system to travel to the CBD. The PDUO-C model is solved by a promising solution algorithm that includes elements of the finite volume method (FVM), the finite element method (FEM), and the explicit total variation diminishing Runge Kutta (TVD-RK) time-stepping method. A numerical example is given to demonstrate the utility of the proposed model and the effectiveness of the solution algorithm in solving this PDUO-C problem. (A) Reprinted with permission from Elsevier.

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Publication

Library number
I E158839 /71 / ITRD E158839
Source

Transportation Research, Part B. 2011 /02. 45(2) Pp343-363 (83 Refs.)

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