Combined gravity model trip distribution and paired combinatorial logit stochastic user equilibrium problem
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Publication:264319
DOI10.1007/s11067-014-9279-xzbMath1332.90056OpenAlexW1999185230MaRDI QIDQ264319
Ampol Karoonsoontawong, Dung-Ying Lin
Publication date: 31 March 2016
Published in: Networks and Spatial Economics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s11067-014-9279-x
combined travel demand modelgravity modelpaired combinatorial logit stochastic user equilibriumpartial linearization algorithm
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Cites Work
- Unnamed Item
- A dual approach for solving the combined distribution and assignment problem with link capacity constraints
- Considering en-route choices in utility-based route choice modelling
- Combined route choice and adaptive traffic control in a day-to-day dynamical system
- Computation and application of the paired combinatorial logit stochastic user equilibrium problem
- Method of successive weighted averages (MSWA) and self-regulated averaging schemes for solving stochastic user equilibrium problem
- Alternative formulations of a combined trip generation, trip distribution, modal split, and trip assignment model
- The combined distribution and stochastic assignment problem
- Partial linearization methods in nonlinear programming
- A unified description of iterative algorithms for traffic equilibria
- Multiclass combined models for urban travel forecasting
- Modeling mode and route similarities in network equilibrium problem with go-green modes
- An improved origin-based algorithm for solving the combined distribution and assignment problem
- Network-based accessibility measures for vulnerability analysis of degradable transportation networks
- Simplicial Decomposition with Disaggregated Representation for the Traffic Assignment Problem
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