Volume 39 Issue 6
Dec.  2021
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LU Rongqin, ZHAO Xiaomei, LIU Binbin. Flexible Returning/Parking Strategies for One-way Car-sharing Systems[J]. Journal of Transport Information and Safety, 2021, 39(6): 135-142, 179. doi: 10.3963/j.jssn.1674-4861.2021.06.016
Citation: LU Rongqin, ZHAO Xiaomei, LIU Binbin. Flexible Returning/Parking Strategies for One-way Car-sharing Systems[J]. Journal of Transport Information and Safety, 2021, 39(6): 135-142, 179. doi: 10.3963/j.jssn.1674-4861.2021.06.016

Flexible Returning/Parking Strategies for One-way Car-sharing Systems

doi: 10.3963/j.jssn.1674-4861.2021.06.016
  • Received Date: 2021-08-23
    Available Online: 2022-01-12
  • In one-way car-sharing systems, there are not enough parking places for users to return cars in many cases. Two flexible returning/parking strategies are proposed to solve this problem: parking cars in temporary spaces and unoccupied spaces. In the former strategy, users are allowed to return cars to temporary parking spaces nearest to the car-returning stations. In the latter one, users are encouraged to park cars in available spots in the same zone as the car-returning stations. A mixed-integer nonlinear programming model is developed to maximize the profit of car-sharing companies. The big-M method is applied to convert the nonlinear constraints into linear constraints, and the commercial solver is used to solve the transformed model. A case study shows that parking in temporary spaces and unoccupied spaces can improve the profits of car-sharing companies. The maximal profit increasing rates are 25% and 37%, respectively. When the number of parking spaces is lower than demands, parking to temporary spaces performs well in improving the profits. Under the same circumstance, the more temporary parking spaces the company rent, the higher profits the company can obtain.

     

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  • [1]
    HERBAWI W, KNOLL M, KAISER M, et al. An evolutionary algorithm for the vehicle relocation problem in free floating carsharing[C]. IEEE Congress on Evolutionary Computation(CEC), Vancouver, B. C.: IEEE, 2016.
    [2]
    JORGE D, CORREIA G. Carsharing systems demand estimation and defined operations: A literature review[J]. European Journal of Transport and Infrastructure Research, 2013, 13(3): 201-220. http://download.xuebalib.com/5fqBsu7YR13.pdf
    [3]
    王科明. 共享汽车场站选址决策及联合调度优化研究[D]. 大连: 大连海事大学, 2017.

    WANG Keming. Research on location decision and joint scheduling optimization of car sharing system[D]. Dalian: Dalian Maritime University, 2017. (in Chinese).
    [4]
    WEIKL S, BOGENBERGER K. Integrated relocation model for free-floating carsharing systems: Field trial results[J]. Transportation Research Record, 2015, 2563(1): 19-27. http://www.onacademic.com/detail/journal_1000039027958010_75bb.html
    [5]
    王燕. 共享汽车异地还车车辆调度模型研究[D]. 上海: 东华大学, 2019.

    WANG Yan. Research on dispatching model of returning vehicles in different places under lease mode[D]. Shanghai: Donghua University, 2019. (in Chinese).
    [6]
    NOURINEJAD M, ZHU S, BAHRAMI S, et al. Vehicle relocation and staff rebalancing in one-way carsharing systems[J]. Transportation Research Part E: Logistics & Transportation Review, 2015, 81(7): 98-113. http://www.researchgate.net/profile/Mehdi_Nourinejad/publication/280094086_Vehicle_relocation_and_staff_rebalancing_in_one-way_carsharing_systems/links/55a895d208ae815a042149e3.pdf
    [7]
    BOYACI B, ZOGRAFOS K G, GEROLIMINIS N. An optimization framework for the development of efficient one-way car-sharing systems[J]. European Journal of Operational Research, 2015, 240(3): 718-733. doi: 10.1016/j.ejor.2014.07.020
    [8]
    BRUGLIERI M, PEZZELLA F, PISACANE O. A two-phase optimization method for a multiobjective vehicle relocation problem in electric carsharing systems[J]. Journal of Combinatorial Optimization, 2018, 36(1): 162-193. doi: 10.1007/s10878-018-0295-5
    [9]
    CORREIA G, ANTUNES A P. Optimization approach to depot location and trip selection in one-way carsharing systems[J]. Transportation Research Part E: Logistics & Transportation Review, 2012, 48(1): 233-247. http://www.sciencedirect.com/science?_ob=ShoppingCartURL&_method=add&_eid=1-s2.0-S1366554511000822&originContentFamily=serial&_origin=article&_ts=1493753592&md5=25689bcb4f3733049ab2ddbb39e4bc57
    [10]
    DEZA A, HUANG K, METEL M R. Charging station optimization for balanced electric car sharing[J/OL]. Discrete Applied Mathematics, (2018-11)[2021-11-22]. https://arxiv.org/pdf/1811.11970.pdf.
    [11]
    LU R Q, CORREIA G, ZHAO X M, et al. Performance of one-way carsharing systems under combined strategy of pricing and relocations[J]. Transportmetrica B: Transport Dynamics, 2021, 9(1): 134-152. doi: 10.1080/21680566.2020.1819912
    [12]
    方超. 面向自组织均衡的分时租赁车辆调度优化算法[D]. 北京: 北京交通大学, 2019.

    FANG Chao. A self-organizing equilibrium-oriented relocation optimization algorithm of carsharing[D]. Beijing: Beijing Jiaotong University, 2019. (in Chinese).
    [13]
    刘向, 董德存, 王宁, 等. 基于Nested Logit的电动汽车分时租赁选择行为分析[J]. 同济大学学报(自然科学版), 2019, 47(1): 47-55. https://www.cnki.com.cn/Article/CJFDTOTAL-TJDZ201901006.htm

    LIU Xiang, DONG Decun, WANG Ning, et al. Analysis of choices of electric car sharing based on nested logit model[J]. Journal of Tongji University(Nature Science), 2019, 47(1): 47-55. https://www.cnki.com.cn/Article/CJFDTOTAL-TJDZ201901006.htm
    [14]
    FEBBRARO A, SACCO N, SAEEDMOA M. One-way carsharing: solving the relocation problem[J]. Transportation Research Record: Journal of the Transportation Research Board, 2012, 2319(1): 113-120. doi: 10.3141/2319-13
    [15]
    JORGE D, MOLNAR G, CORREIA G. Trip pricing of one-way station-based carsharing networks with zone and time of day price variations[J]. Transportation Research Part B: Methodological, 2015(81): 461-482.
    [16]
    CORREOA G, JORGE D R, ANTUNES D M. The added value of accounting for users flexibility and information on the potential of a station-based one-way car-sharing system: An application in Lisbon, Portugal[J]. Journal of Intelligent Transportation Systems: Technology, Planning, and Operations, 2014, 18(3): 299-308. doi: 10.1080/15472450.2013.836928
    [17]
    NAIR R, MILLERHOOKS E. Equilibrium network design of shared-vehicle systems[J]. European Journal of Operational Research, 2014, 235(1): 47-61. doi: 10.1016/j.ejor.2013.09.019
    [18]
    HUANG K, CORREOA G H D A, An K. Solving the station-based one-way carsharing network planning problem with relocations and non-linear demand[J]. Transportation Research Part C: Emerging Technologies, 2018(90): 1-17. http://www.sciencedirect.com/science?_ob=ShoppingCartURL&_method=add&_eid=1-s2.0-S0968090X18302511&originContentFamily=serial&_origin=article&_ts=1520581762&md5=f536776bdf63657be535e6580c8e3efe
    [19]
    兰州市物价局. 兰州市机动车停放服务收费管理办法[OL].(2017-09)[2021-11-22]. http://m.xinhuanet.com/gs/201709/16/c_1121673930.htm

    Price Bureau of Lanzhou. Motor vehicle parking service fee management approach of Lanzhou[OL].(2017-09) [2021-11-22]. http://m.xinhuanet.com/gs/201709/16/c_1121673930.htm
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