An A Algorithm Framework for the point-to-point Time-Dependent Shortest Path Problem
Given a directed graph, a nonnegative transit-time function ce(t) for each edge e (where t denotes departure time at the tail of e), a source vertex s, a destination vertex d and a departure time t0, the point-to-point time-dependent shortest path problem (TDSPP) asks to find an s,d-path that leaves...
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| Published in | Computational Geometry, Graphs and Applications Vol. 7033; pp. 154 - 163 |
|---|---|
| Main Authors | , , , |
| Format | Book Chapter |
| Language | English |
| Published |
Germany
Springer Berlin / Heidelberg
2011
Springer Berlin Heidelberg |
| Series | Lecture Notes in Computer Science |
| Subjects | |
| Online Access | Get full text |
| ISBN | 9783642249822 3642249825 |
| ISSN | 0302-9743 1611-3349 |
| DOI | 10.1007/978-3-642-24983-9_16 |
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| Abstract | Given a directed graph, a nonnegative transit-time function ce(t) for each edge e (where t denotes departure time at the tail of e), a source vertex s, a destination vertex d and a departure time t0, the point-to-point time-dependent shortest path problem (TDSPP) asks to find an s,d-path that leaves s at time t0 and minimizes the arrival time at d. This formulation generalizes the classical shortest path problem in which ce are all constants.
This paper presents a novel generalized A* algorithm framework by introducing time-dependent estimator functions. This framework generalizes previous proposals that work with static estimator functions. We provide sufficient conditions on the time-dependent estimator functions for the correctness. As an application, we design a practical algorithm which generalizes the ALT algorithm for the classical problem (Goldberg and Harrelson, SODA05). Finally experimental results on several road networks are shown. |
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| AbstractList | Given a directed graph, a nonnegative transit-time function ce(t) for each edge e (where t denotes departure time at the tail of e), a source vertex s, a destination vertex d and a departure time t0, the point-to-point time-dependent shortest path problem (TDSPP) asks to find an s,d-path that leaves s at time t0 and minimizes the arrival time at d. This formulation generalizes the classical shortest path problem in which ce are all constants.
This paper presents a novel generalized A* algorithm framework by introducing time-dependent estimator functions. This framework generalizes previous proposals that work with static estimator functions. We provide sufficient conditions on the time-dependent estimator functions for the correctness. As an application, we design a practical algorithm which generalizes the ALT algorithm for the classical problem (Goldberg and Harrelson, SODA05). Finally experimental results on several road networks are shown. |
| Author | Ohshima, Tatsuya Eumthurapojn, Pipaporn Nagamochi, Hiroshi Zhao, Liang |
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| Copyright | Springer-Verlag Berlin Heidelberg 2011 |
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| DOI | 10.1007/978-3-642-24983-9_16 |
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| Discipline | Mathematics Computer Science |
| EISBN | 3642249833 9783642249839 |
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| Editor | Kano, Mikio Bo, Jiang Akiyama, Jin Tan, Xuehou |
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| Notes | This research was partially supported by the Ministry of Education, Science, Sports and Culture (MEXT), Japan. |
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| PublicationSubtitle | International Conference,CGGA 2010, Dalian, China, November 3-6, 2010, Revised, Selected Papers |
| PublicationTitle | Computational Geometry, Graphs and Applications |
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| Snippet | Given a directed graph, a nonnegative transit-time function ce(t) for each edge e (where t denotes departure time at the tail of e), a source vertex s, a... |
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| StartPage | 154 |
| SubjectTerms | Algorithm Framework Algorithms & data structures Discrete mathematics Estimator Function Fast Path Graphics programming Road Network Short Path Problem |
| Title | An A Algorithm Framework for the point-to-point Time-Dependent Shortest Path Problem |
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