A destination-preserving model for simulating Wardrop equilibria in traffic flow on networks
Articolo
Data di Pubblicazione:
2015
Abstract:
In this paper we propose a LWR-like model for traffic flow on
networks which allows to track several groups of drivers, each of them being
characterized only by their destination in the network. The path actually
followed to reach the destination is not assigned a priori, and can be chosen
by the drivers during the journey, taking decisions at junctions.
The model is then used to describe three possible behaviors of drivers, as-
sociated to three different ways to solve the route choice problem: 1. Drivers
ignore the presence of the other vehicles; 2. Drivers react to the current dis-
tribution of traffic, but they do not forecast what will happen at later times;
3. Drivers take into account the current and future distribution of vehicles.
Notice that, in the latter case, we enter the field of differential games, and, if
a solution exists, it likely represents a global equilibrium among drivers.
Numerical simulations highlight the differences between the three behaviors
and offer insights into the existence of equilibria.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
Traffic; networks; source-destination model; multi-path model; multi- population model; multi-commodity model; Wardrop equilibrium; Nash equilibrium.
Elenco autori:
Priuli, FABIO SIMONE; Cristiani, Emiliano
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