Optimization of Synchronized Scheduling for Dual-Source Trolleybus Network

被引:2
作者
Zou, Changfeng [1 ]
Sun, Ning [1 ]
Hu, Baoyu [1 ]
Li, Hongliang [2 ]
机构
[1] Northeast Forestry Univ, Sch Traff & Transportat, Harbin 150040, Peoples R China
[2] Nantong Univ, Sch Transportat & Civil Engn, Nantong 226019, Peoples R China
基金
中国国家自然科学基金;
关键词
Dual-source trolleybus; Deficit function; Synchronized scheduling; Pareto efficient solution; Integer linear programming; TRANSPORT TIMETABLE SYNCHRONIZATION; MANAGEMENT; MODEL;
D O I
10.1061/JTEPBS.TEENG-7232
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
With the development of new energy technologies, dual-source trolleybuses are widely used in public transportation systems. A synergistic schedule can further improve the service quality of vehicles and optimize the passenger travel experience. This study investigated the synchronized scheduling of dual-source trolleybus networks to reduce the transfer time of passengers and the fleet size problem to reduce the operating cost of enterprises. A bi-objective mixed-integer linear programming model was developed to maximize the total synchronizations and minimize the total fleet size of dual-source trolleybus lines. A two-stage algorithm was designed to obtain multiple sets of Pareto effective solutions. Meanwhile, to demonstrate the effectiveness of the proposed method, the results of numerical examples solved by the two-stage algorithm were compared with those of a genetic algorithm (GA) and a nondominated sorting genetic algorithm (NSGA-II). A real-world case study based on the Beijing dual-source trolleybus network was studied to validate the proposed model. The results show that the model can obtain synchronized schedules. The optimization of the number of synchronizations and fleet size is obvious. The model and algorithm can be applied to a large dual-source trolleybus network.
引用
收藏
页数:22
相关论文
共 21 条
  • [1] Ceder A, 2015, PUBLIC TRANSIT PLANNING AND OPERATION: MODELING, PRACTICE AND BEHAVIOR, 2ND EDITION, P1
  • [2] Creating bus timetables with maximal synchronization
    Ceder, A
    Golany, B
    Tal, O
    [J]. TRANSPORTATION RESEARCH PART A-POLICY AND PRACTICE, 2001, 35 (10) : 913 - 928
  • [3] Transfer Synchronization of Public Transport Networks
    Ceder, Avishai
    Hadas, Yuval
    McIvor, Michael
    Ang, Albert
    [J]. TRANSPORTATION RESEARCH RECORD, 2013, (2350) : 9 - 16
  • [4] A fast and elitist multiobjective genetic algorithm: NSGA-II
    Deb, K
    Pratap, A
    Agarwal, S
    Meyarivan, T
    [J]. IEEE TRANSACTIONS ON EVOLUTIONARY COMPUTATION, 2002, 6 (02) : 182 - 197
  • [5] Multiperiod-based timetable optimization for metro transit networks
    Guo, Xin
    Sun, Huijun
    Wu, Jianjun
    Jin, Jiangang
    Zhou, Jin
    Gao, Ziyou
    [J]. TRANSPORTATION RESEARCH PART B-METHODOLOGICAL, 2017, 96 : 46 - 67
  • [6] Optimal coordination of public-transit vehicles using operational tactics examined by simulation
    Hadas, Yuval
    Ceder, Avishai
    [J]. TRANSPORTATION RESEARCH PART C-EMERGING TECHNOLOGIES, 2010, 18 (06) : 879 - 895
  • [7] Multiperiod Bus Timetabling
    Ibarra-Rojas, Omar J.
    Lopez-Irarragorri, Fernando
    Rios-Solis, Yasmin A.
    [J]. TRANSPORTATION SCIENCE, 2016, 50 (03) : 805 - 822
  • [8] Synchronization of bus timetabling
    Ibarra-Rojas, Omar J.
    Rios-Solis, Yasmin A.
    [J]. TRANSPORTATION RESEARCH PART B-METHODOLOGICAL, 2012, 46 (05) : 599 - 614
  • [9] User and Operator Perspectives in Public Transport Timetable Synchronization Design
    Liu, Tao
    Ceder, Avishai
    [J]. TRANSPORTATION RESEARCH RECORD, 2017, (2667) : 154 - 163
  • [10] Integrated public transport timetable synchronization with vehicle scheduling
    Liu, Tao
    Ceder, Avishai
    Chowdhury, Subeh
    [J]. TRANSPORTMETRICA A-TRANSPORT SCIENCE, 2017, 13 (10) : 932 - 954