Improving the Convergence of Simulation-based Dynamic Traffic Assignment Methodologies

The ability of simulation-based dynamic traffic assignment (SBDTA) models to produce reliable solutions is crucial for practical applications, particularly for those involving the comparison of modeling results across multiple scenarios. This work reviews, implements and compares novel and existing...

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Published inNetworks and spatial economics Vol. 15; no. 3; pp. 655 - 676
Main Authors Levin, Michael W., Pool, Matt, Owens, Travis, Juri, Natalia Ruiz, Travis Waller, S.
Format Journal Article
LanguageEnglish
Published New York Springer US 01.09.2015
Springer Nature B.V
Subjects
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ISSN1566-113X
1572-9427
DOI10.1007/s11067-014-9242-x

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Abstract The ability of simulation-based dynamic traffic assignment (SBDTA) models to produce reliable solutions is crucial for practical applications, particularly for those involving the comparison of modeling results across multiple scenarios. This work reviews, implements and compares novel and existing techniques for finding equilibrium solutions for SBDTA problems, focusing on their convergence pattern and stability of the results. The considered methodologies, ranging from MSA and gradient-based heuristics to column generation frameworks and partial demand loading schemes, have not been previously compared side-to-side in the literature. This research uses a single SBDTA platform to conduct such comparison on three real networks, including one with more than 200,000 trips. Most analyzed approaches were found to require a similar number of simulation runs to reach near-equilibrium solutions. However, results suggest that the quality of the results for a given convergence level may vary across methodologies.
AbstractList Issue Title: Dynamic Traffic Assignment The ability of simulation-based dynamic traffic assignment (SBDTA) models to produce reliable solutions is crucial for practical applications, particularly for those involving the comparison of modeling results across multiple scenarios. This work reviews, implements and compares novel and existing techniques for finding equilibrium solutions for SBDTA problems, focusing on their convergence pattern and stability of the results. The considered methodologies, ranging from MSA and gradient-based heuristics to column generation frameworks and partial demand loading schemes, have not been previously compared side-to-side in the literature. This research uses a single SBDTA platform to conduct such comparison on three real networks, including one with more than 200,000 trips. Most analyzed approaches were found to require a similar number of simulation runs to reach near-equilibrium solutions. However, results suggest that the quality of the results for a given convergence level may vary across methodologies.
The ability of simulation-based dynamic traffic assignment (SBDTA) models to produce reliable solutions is crucial for practical applications, particularly for those involving the comparison of modeling results across multiple scenarios. This work reviews, implements and compares novel and existing techniques for finding equilibrium solutions for SBDTA problems, focusing on their convergence pattern and stability of the results. The considered methodologies, ranging from MSA and gradient-based heuristics to column generation frameworks and partial demand loading schemes, have not been previously compared side-to-side in the literature. This research uses a single SBDTA platform to conduct such comparison on three real networks, including one with more than 200,000 trips. Most analyzed approaches were found to require a similar number of simulation runs to reach near-equilibrium solutions. However, results suggest that the quality of the results for a given convergence level may vary across methodologies.
Author Travis Waller, S.
Levin, Michael W.
Owens, Travis
Pool, Matt
Juri, Natalia Ruiz
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Issue 3
Keywords Gradient
Column generation
Stability
Dynamic traffic assignment
Simulation
Heuristics
Simplicial decomposition
MSA
Gradient projection
Based
Convergence
Language English
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PublicationSubtitle A Journal of Infrastructure Modeling and Computation
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Snippet The ability of simulation-based dynamic traffic assignment (SBDTA) models to produce reliable solutions is crucial for practical applications, particularly for...
Issue Title: Dynamic Traffic Assignment The ability of simulation-based dynamic traffic assignment (SBDTA) models to produce reliable solutions is crucial for...
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SubjectTerms Algorithms
Civil Engineering
Computer simulation
Convergence
Dynamics
Economic models
Economic statistics
Economic theory
Economics
Economics and Finance
Equilibrium
Heuristic
Mathematical models
Networks
Operations Research/Decision Theory
Regional/Spatial Science
Simulation
Studies
Traffic assignment
Traffic engineering
Traffic flow
Travel
Vehicles
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Title Improving the Convergence of Simulation-based Dynamic Traffic Assignment Methodologies
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