Title of article :
Wardrop's first principle: Extension for capacitated networks
Author/Authors :
Zokaei Aashtiani, H Department of Civil Engineering - Sharif University of Technology (SUT) - Tehran, Iran , Poorzahedy, H Department of Civil Engineering - Sharif University of Technology (SUT) - Tehran, Iran , Nourinejad, M Department of Civil Engineering - University of Toronto - Toronto - Ontario, Canada
Abstract :
In transportation literature, User Equilibrium (UE) has been widely studied
since early 1950's, many studies of which dene equilibrium
ow of traffic for uncapacitated
networks based on Wardrop's first principle, implying also a Nash Equilibrium (NE).
Although, in general, the two equilibria (UE and NE) are not explicitly the same, they
are shown to be equivalent under special conditions for uncapacitated UE, when volumedelay
functions are separable, continuous, non-decreasing and non-negative. A good deal of
research is devoted to explain UE in capacitated networks based onWardrop's first principle
and the concept of generalized costs. However, UE for capacitated networks, even under
the defined special conditions, is not equivalent to NE. This paper extends Wardrop's first
principle to explain UE in capacitated networks, which, under the same special conditions
of uncapacitated networks, would represent an NE as well. Moreover, a complementarity
equilibrium model is proposed for UE, based on an extension of Wardrop's principle.
Keywords :
Equilibrium ow , Wardrop principle , Nash equilibrium , Link capacity , Transportation network
Journal title :
Scientia Iranica(Transactions A: Civil Engineering)