吉林大学学报(工学版) ›› 2026, Vol. 56 ›› Issue (7): 1937-1949.doi: 10.13229/j.cnki.jdxbgxb.20241293
• 交通运输工程·土木工程 • 上一篇
Ming LIU1,2(
),Si-wei CHEN1,Jun-jie WANG1,Yu-xuan LIANG1,Xiao-dong YU3(
)
摘要:
为缓解城市交通运输压力,进一步提高运输效率,本文根据复杂交通网络节点理论设计评价指标,结合层次分析法的多目标决策方法(AHP-RatioMOORA)对地铁站点重要性进行排序并计算出权重,并根据重要性对地铁物流配送枢纽进行选址。同时,为解决传统优化算法在复杂约束条件下存在收敛困难、全局搜索能力差的问题,通过对A*算法进行结构化的改进,建立一种模块化的寻优算法,对地铁货车快递联运任务进行分析建模,并结合多种约束的改进目标函数对该任务进行实例分析。案例分析结果表明,本文所提出的方法相较于其他多种优化算法在地铁货车快递联运任务中有着显著提升,优化后最短物流运输距离平均缩小13.21%,物流订单完成时间平均缩短11.73%,算法运行时间平均缩短24.79%。
| [1] | Chen Z L, Chen J Y, Liu H, et al. Present status and development trends of underground space in Chinese cities: Evaluation and analysis[J]. Tunnelling and Underground Space Technology, 2018, 71: 253-270. |
| [2] | Dampier A, Marinov M. A study of the feasibility and potential implementation of metro-based freight transportation in newcastle upon tyne[J]. Urban Rail Transit, 2015, 1(3): 164-182. |
| [3] | 钱七虎. 建设特大城市地下快速路和地下物流系统:解决中国特大城市交通问题的新思路[J]. 科技导报,2004(4): 3-6. |
| Qian Qi-hu. Construction of underground expressway and underground logistics system in megacities: a new approach to solving traffic problems in China's megacities[J]. Science & Technology Review, 2004(4):3-6. | |
| [4] | He K T, Shao J P, Liu Y B, et al. Conceptual design of rail transit based urban logistics delivery system[C]∥6th IEEE International Conference on Industrial Informatics, IEEE, 2008: 221-226. |
| [5] | Kikuta J, Ito T, Tomiyama I, et al. New subway-integrated city logistics szystem[J]. Procedia-Social and BehavioralSciences, 2012, 39: 476-489. |
| [6] | 周芳汀, 张锦, 周国华. 带时间窗的地铁配送网络路径优化问题[J]. 交通运输系统工程与信息, 2018, 18(5): 88-94. |
| Zhou Fang-ding, Zhang Jin, Zhou Guo-hua. Subway-based distribution network routing optimization problem with time windows[J]. Journal of Transportation Systems Engineering and Information Technology, 2018, 18(5): 88-94. | |
| [7] | 聂闻聪, 楚龙娟, 向楠, 等. 城市轨道物流配送模式研究及节点选址优化[J]. 地下空间与工程学报, 2023, 19 (): 17-25. |
| Nie Wen-chong, Chu Long-juan, Xiang Nan, et al. Researchon distribution model of urban rail logistics and optimization of node location[J]. Chinese Journal of Underground Space and Enginee, 2023, 19(Sup.1):17-25. | |
| [8] | 舒达, 梁承姬, 王钰, 等. 基于双边匹配的城市地铁多级配送选址-路径研究[J]. 计算机工程, 2025, 51(9): 1-12. |
| Shu Da, Liang Cheng-ji, Wang Yu, et al. Research on Multi-stage distribution site-routing of urban Subway based on bilateral matching[J]. Computer engineering, 2025, 51(9): 1-12. | |
| [9] | Taniguchi E. City logistics for sustainable and liveable cities[J]. Green logistics and transportation: A sustainable supply chain perspective, 2015: 49-60. |
| [10] | Diziain D, Taniguchi E, Dablanc L. Urban logistics by rail and waterways in France and Japan[J]. Procedia-Social and Behavioral Sciences, 2014, 125: 159-170. |
| [11] | 余欣鹏, 余子扬, 崔歡鑫, 等. 基于优化算法的新能源汽车充电站选址研究[J]. 汽车测试报告, 2024(6): 71-73. |
| Yu Xin-peng, Yu Zi-yang, Cui Huan-xin,et al. Research on charging station location for new energy vehicles based on optimization algorithm[J]. Auto Testing Report,2024(6):71-73. | |
| [12] | 丁昱杰, 张凯, 张龄允, 等. 基于遗传灰狼算法的员工通勤合乘路径优化[J]. 现代信息科技, 2023, 7 (2): 112-115. |
| Ding Yu-jie, Zhang Kai, Zhang Ling-yun,et al.Employee commute carpooling route optimization based on genetic grey wolf algorithm[J]. Modern Information Technology, 2023, 7(2): 112-115. | |
| [13] | 潘寒川, 戚博洋, 胡华, 等. 考虑司机偏好的城市轨道交通混合乘务轮转模型[J]. 交通运输系统工程与信息, 2023, 23(5): 258-267. |
| Pan Han-chuan, Qi Bo-yang, Hu Hua,et al. Preference-oriented task-type-mixed crew rostering optimization model for urban railway transit[J]. Journal of Transportation Systems Engineering and Information Technology,2023,23(5):258-267. | |
| [14] | 任睿, 胡万杰, 董建军, 等. 轴辐式城市地铁-货运系统网络布局优化[J]. 系统仿真学报, 2021, 33 (7): 1699-1712. |
| Ren Rui, Hu Wan-jie, Dong Jian-jun, et al. Optimization of urban metro-based underground logistics system network with hub-and-spoke layout[J]. Journal of System Simulation, 2021, 33(7): 1699-1712. | |
| [15] | 程国柱, 吕岩峰, 冯天军. 地铁站周边常规公交换乘站点布局多目标优化模型[J/OL]. [2024-11-14].. |
| [16] | 刘康琳, 张泽宇, 蒋婧雯, 等.基于分布鲁棒优化的无人机配送设施选址分配问题[J/OL].吉林大学学报: 工学版[2024-11-14].. |
| [17] | 赵宏伟, 刘宇琦, 董立岩, 等. 智能交通混合动态路径优化算法[J]. 吉林大学学报: 工学版,2018, 48(4):1214-1223. |
| Zhao Hong-wei, Liu Yu-qi, Dong Li-yan, et al. Dynamic route optimization algorithm based on hybrid in ITS[J]. Journal of Jilin University(Engineering and Technology Edition),2018,48(4):1214-1223. | |
| [18] | 王玉, 申铉京, 周昱洲, 等. 一种求解交通网络中最短路径问题的人工蜂群算法[J]. 吉林大学学报:理学版, 2021, 59(5): 1144-1150. |
| Wang Yu, Shen Xuan-jing, Zhou Yu-zhou, et al. An artificial bee colony algorithm for solving the shortest path problem in traffic network[J]. Journal of Jilin University(Science Edition), 2021, 59(5): 1144-1150. | |
| [19] | Zhao L J, Li H Y, Li M C, et al. Location selection of intra-city distribution hubs in the metro-integrated logistics system[J]. Tunnelling and Underground Space Technology, 2018, 80: 246-256. |
| [20] | Zhang J L, Yu L. Degree centrality, betweenness centrality, and closeness centrality in social network[C]∥2nd international conference on modelling, simulation and applied mathematics (MSAM2017). Atlantis press, 2017: 300-303. |
| [21] | Zhang Y P, Bao Y Y, Zhao S, et al. Identifying node importance by combining betweenness centrality and katz centrality[C]∥International Conference on Cloud Computing and Big Data. IEEE, 2015: 354-357. |
| [22] | Maharani W, Gozali A A. Degree centrality and eigenvector centrality in twitter[C]∥8th international conference on telecommunication systems services and applications, IEEE, 2014: 1-5. |
| [23] | Brauers W K, Zavadskas E K. The MOORA method and its application to privatization in a transition economy[J]. Control and cybernetics, 2006, 35(2): 445-469. |
| [24] | Ho W. Integrated analytic hierarchy process and its applications-A literature review[J]. European Journal of operational research, 2008, 186(1): 211-228. |
| [25] | Pardalos P M, Mavridou T D. Simulated Annealing[M].Encyclopedia of Optimization. Cham: Springer International Publishing, 2024. |
| [26] | Ye Y T, Guo J H, Yan L X. A metro freight plan for mixed passenger and freight transportation[J]. Journal of Advanced Transportation, 2022(1): 6602387. |
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