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 in | Networks and spatial economics Vol. 15; no. 3; pp. 655 - 676 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
New York
Springer US
01.09.2015
Springer Nature B.V |
Subjects | |
Online Access | Get full text |
ISSN | 1566-113X 1572-9427 |
DOI | 10.1007/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. |
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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 |
Author_xml | – sequence: 1 givenname: Michael W. surname: Levin fullname: Levin, Michael W. email: michaellevin@utexas.edu organization: The University of Texas at Austin – sequence: 2 givenname: Matt surname: Pool fullname: Pool, Matt organization: The University of Texas at Austin – sequence: 3 givenname: Travis surname: Owens fullname: Owens, Travis organization: The University of Texas at Austin – sequence: 4 givenname: Natalia Ruiz surname: Juri fullname: Juri, Natalia Ruiz organization: Network Modeling Center, The University of Texas at Austin – sequence: 5 givenname: S. surname: Travis Waller fullname: Travis Waller, S. organization: The University of New South Wales |
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Cites_doi | 10.1007/s11067-007-9023-x 10.1016/j.trb.2011.02.010 10.1016/0191-2615(94)00022-R 10.1016/0191-2615(94)90002-7 10.1080/18128600802630281 10.1287/trsc.16.1.45 10.1016/j.ejor.2006.07.054 10.1080/18128600608685654 10.1098/rspa.1955.0089 10.1016/S0895-7177(99)00231-9 10.3141/2284-09 10.1287/opre.4.1.42 10.1016/j.trb.2008.07.005 10.3141/2029-03 10.1109/TAC.1983.1103183 10.1016/j.trb.2010.05.005 10.1016/0191-2615(79)90022-5 10.1016/S0968-090X(00)00027-9 10.1007/s11067-013-9206-6 10.1287/trsc.26.1.4 10.1214/aoms/1177729586 |
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Keywords | Gradient Column generation Stability Dynamic traffic assignment Simulation Heuristics Simplicial decomposition MSA Gradient projection Based Convergence |
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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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