C-logit stochastic user equilibrium model with elastic demand
<title>Abstract</title> Modeling the elasticity of travel demand in network equilibrium analysis has several important transportation applications. In this paper, we provide a mathematical programming formulation for the C-logit stochastic user equilibrium problem with elastic demand (CL-SUE-ED) in the route domain. The proposed model is capable of explicitly modeling the elasticity of travel demand and the effect of route overlapping on travel choice and route choice simultaneously. Some qualitative properties of the model, including the equivalency and uniqueness of the solution, are also rigorously proved. To solve the CL-SUE-ED model, a partial linearization method is developed to handle the elastic demand and route overlapping considerations. In addition, a self-regulated averaging stepsize scheme is adopted to smartly determine the stepsize while avoiding evaluating the complex objective function. Numerical examples are also provided to demonstrate the features of the proposed model and solution algorithm.
Year of publication: |
2013
|
---|---|
Authors: | Xu, Xiangdong ; Chen, Anthony |
Published in: |
Transportation Planning and Technology. - Taylor & Francis Journals, ISSN 0308-1060. - Vol. 36.2013, 5, p. 463-478
|
Publisher: |
Taylor & Francis Journals |
Saved in:
Saved in favorites
Similar items by person
-
A self-adaptive gradient projection algorithm for the nonadditive traffic equilibrium problem
Chen, Anthony, (2012)
-
Computation and application of the paired combinatorial logit stochastic user equilibrium problem
Chen, Anthony, (2014)
-
Ryu, Seungkyu, (2014)
- More ...