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竞争环境下的轴-辐式集装箱海运网络设计问题

, PP. 103-112

Keywords: 轴-辐式网络,竞争,枢纽选址,遗传算法,集装箱海运

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Abstract:

?针对航运企业的重组与全球扩张引起的竞争问题,提出了竞争环境下的轴-辐式集装箱海运网络设计模型。模型采用基于路径的变量作为决策变量,利用离散函数来表示航运企业与航运联盟的竞争可吸引的流量(或客户),目的在于通过设计混合轴-辐式集装箱海运网络,实现以更低的服务成本和更短的服务时间最大化可吸引的流量,建立了枢纽港口数量约束、航线连接约束、航线中转约束、流量竞争约束等,运用多点交叉遗传算法进行求解,最后结合亚欧航线的集装箱海运市场进行实例分析,对考虑客户需求多样性与航运联盟对策下的轴-辐式集装箱海运网络进行设计,并验证了算法的计算效果。

References

[1]  计明军, 陈哲, 王清斌. 集装箱船舶支线运输航线优化算法[J]. 交通运输工程学报, 2011, 11(4): 68-75.
[2]  倪玲霖, 史峰. 多分配快递轴辐网络的枢纽选址与分配优化方法[J]. 系统工程理论与实践, 2012, 32(2): 441-448.
[3]  陆婧, 杨忠振, 刘瑞菊. 考虑发车间隔与乘客人数关系的机场长途巴士时刻表优化设计[J]. 系统工程理论与实践, 2013, 33(8): 2097-2104.
[4]  邓亚娟, 陈小鸿, 杨超. 需求不确定的枢纽辐射式航线网络设计[J]. 交通运输工程学报, 2009, 9(6): 68-74.
[5]  Nasrin A, Reza Z F, Mark G. Network design approach for hub ports-shipping companies competition and cooperation[J]. Transportation Research Part A, 2013, 48(2): 1-18.
[6]  王成金. 世界航运企业重组及其对航运网络结构的影响——兼论对中国港口体系的影响[J]. 世界地理研究, 2008, 17(1): 94-104.
[7]  Ducruet C, Notteboom T. The worldwide maritime network of container shipping: spatial structure and regional dynamics[J]. Global networks, 2012, 12(3): 395-423.
[8]  Wang Chengjin, Wang Jiaoe. Spatial pattern of the global shipping network and its hub-and-spoke system[J]. Research in Transportation Economics, 2011, 32(1): 54-63.
[9]  Meng Qiang, Wang Xinchang. Intermodal hub-and-spoke network design: Incorporating multiple stakeholders and multi-type containers[J]. Transportation Research Part B, 2011, 45(4): 724-742.
[10]  李阳. 轴-辐式网络理论及应用研究[D]. 上海: 复旦大学, 2006.
[11]  傅少川, 胡梦飞, 唐方成. 禁忌搜索算法在单分配多枢纽轴辐式物流网络中的应用[J]. 中国管理科学, 2012, 20(3): 145-151.
[12]  Campbell J F. Hub location for time definite transportation[J]. Computers and Operations Research, 2009, 36(12): 3107-3116.
[13]  Alumur S, Kara B Y. Network hub location problems: the state of the art[J]. European Journal of Operational Research, 2008, 190(1): 1-21.
[14]  Campbell J F, O'Kelly M E. Twenty-five years of hub location research[J]. Transportation Science, 2012, 46(2): 153-169.
[15]  Faharani R, Hetmakfar M, Boloori A,et al. Hub location problems: a review of models, classification, solution techniques, and applications[J]. Computers and Industrial Engineering, 2013, 64(4): 1096-1109.
[16]  Gabriela M, Bernd W. Hub locator: An exact solution method for the multiple allocation hub location problem[J]. Computers and Operations Research, 2002, 29(6): 715-739.
[17]  Economides N. The economics of networks[J]. International Journal of Industrial Organization, 1996, 1(14): 673-700.
[18]  Marianov V, Serra D, ReVelle C. Location of hubs in a competitive environment[J]. European Journal of Operational Research 1999, 114(2): 363-371.
[19]  Sasaki M, Suzuki A, Drezner Z. On the selection of hub airports for the airline hub-and-spoke system[J]. Computers and Operations Research, 1999, 26(14):1411-1422.
[20]  Lüer-Villagra A, Marianov V. A competitive hub location and pricing problem[J]. European Journal of Operational Research, 2013, 231(3): 734-744.
[21]  Eiselt H A, Marianov V. A conditional p-hub location problem with attraction functions[J]. Computers and Operations Research, 2009, 36(12): 3128-3135.
[22]  Sasaki M, Campbell J F, Ernst A T,et al. Hub arc location with competition[R]. Working Paper, Technical Report of the Nanzan Academic Society Information Sciences and Engineering, 2009.
[23]  Imai A, Shintani K, Papadimitriou S. Multi-port vs. hub-and-spoke port calls by containerships[J]. Transportation Research Part E, 2009, 45(5): 740-757.
[24]  Gelareh S, Nickel S, Pisinger D. Liner shipping hub network design in a competitive environment[J]. Transportation Research Part E: Logistics and Transportation Review, 2010, 46(6): 991-1004.
[25]  Bektas T, Chouman M, Crainic T G. Lagrangean-based decomposition algorithms for multicommodity network design problems with penalized constraints[J]. Networks, 2010, 55(3): 171-180.

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