Optimal timetable development for community shuttle network with metro stations
•Two constraints, i.e., vehicle loading and fleet size, are considered in the problem.•A timetable generating method under the fleet size constraint is proposed.•An algorithm, called FW-SDT, is proposed to solve the problem.•FW-SDT is suitable for any continuous passenger’s arrival distribution.•FW-...
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          | Published in | Transportation research. Part C, Emerging technologies Vol. 60; pp. 540 - 565 | 
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| Main Authors | , , , | 
| Format | Journal Article | 
| Language | English | 
| Published | 
            Elsevier India Pvt Ltd
    
        01.11.2015
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| Subjects | |
| Online Access | Get full text | 
| ISSN | 0968-090X 1879-2359  | 
| DOI | 10.1016/j.trc.2015.10.007 | 
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| Abstract | •Two constraints, i.e., vehicle loading and fleet size, are considered in the problem.•A timetable generating method under the fleet size constraint is proposed.•An algorithm, called FW-SDT, is proposed to solve the problem.•FW-SDT is suitable for any continuous passenger’s arrival distribution.•FW-SDT outperforms GA in both accuracy and effectiveness.
This paper investigates an issue for optimizing synchronized timetable for community shuttles linked with metro service. Considering a passenger arrival distribution, the problem is formulated to optimize timetables for multiple community shuttle routes, with the objective of minimizing passenger’s schedule delay cost and transfer cost. Two constraints, i.e., vehicle capacity and fleet size, are modeled in this paper. The first constraint is treated as soft, and the latter one is handled by a proposed timetable generating method. Two algorithms are employed to solve the problem, i.e., a genetic algorithm (GA) and a Frank–Wolfe algorithm combined with a heuristic algorithm of shifting departure times (FW-SDT). FW-SDT is an algorithm specially designed for this problem. The simulated and real-life examples confirm the feasibility of the two algorithms, and demonstrate that FW-SDT outperforms GA in both accuracy and effectiveness. | 
    
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| AbstractList | •Two constraints, i.e., vehicle loading and fleet size, are considered in the problem.•A timetable generating method under the fleet size constraint is proposed.•An algorithm, called FW-SDT, is proposed to solve the problem.•FW-SDT is suitable for any continuous passenger’s arrival distribution.•FW-SDT outperforms GA in both accuracy and effectiveness.
This paper investigates an issue for optimizing synchronized timetable for community shuttles linked with metro service. Considering a passenger arrival distribution, the problem is formulated to optimize timetables for multiple community shuttle routes, with the objective of minimizing passenger’s schedule delay cost and transfer cost. Two constraints, i.e., vehicle capacity and fleet size, are modeled in this paper. The first constraint is treated as soft, and the latter one is handled by a proposed timetable generating method. Two algorithms are employed to solve the problem, i.e., a genetic algorithm (GA) and a Frank–Wolfe algorithm combined with a heuristic algorithm of shifting departure times (FW-SDT). FW-SDT is an algorithm specially designed for this problem. The simulated and real-life examples confirm the feasibility of the two algorithms, and demonstrate that FW-SDT outperforms GA in both accuracy and effectiveness. | 
    
| Author | Ran, Bin Xiong, Jie He, Zhengbing Guan, Wei  | 
    
| Author_xml | – sequence: 1 givenname: Jie surname: Xiong fullname: Xiong, Jie email: 10114191@bjtu.edu.cn organization: Ministry of Education Key Laboratory for Urban Transportation Complex Systems Theory and Technology, Beijing Jiaotong University, No. 3 Shang Yuan Cun, Beijing 100044, China – sequence: 2 givenname: Zhengbing surname: He fullname: He, Zhengbing email: he.zb@hotmail.com organization: Ministry of Education Key Laboratory for Urban Transportation Complex Systems Theory and Technology, Beijing Jiaotong University, No. 3 Shang Yuan Cun, Beijing 100044, China – sequence: 3 givenname: Wei surname: Guan fullname: Guan, Wei email: weig@bjtu.edu.cn organization: Ministry of Education Key Laboratory for Urban Transportation Complex Systems Theory and Technology, Beijing Jiaotong University, No. 3 Shang Yuan Cun, Beijing 100044, China – sequence: 4 givenname: Bin surname: Ran fullname: Ran, Bin email: bran@wisc.edu organization: Wisconsin ITS Program, Department of Civil & Environmental Engineering, University of Wisconsin at Madison, 1415 Engineering Drive, Madison 53706, WI, United States  | 
    
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| Title | Optimal timetable development for community shuttle network with metro stations | 
    
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