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《中国工程科学》 >> 2023年 第25卷 第6期 doi: 10.15302/J-SSCAE-2023.06.015

多式联运联接共性关键技术体系构建研究

1. 兰州交通大学交通运输学院,兰州 730070;

2. 高原铁路运输智慧管控铁路行业重点实验室,兰州 730070;

3. 西南交通大学交通运输与物流学院,成都 611756

资助项目 :中国工程院咨询项目“丝绸之路经济带甘肃段公铁航多式联运联接发展战略研究”(GS2021ZDA05);国家自然科学基金项目(71761025);甘肃省教育厅双一流重大科研项目(GSSYLXM-04) 收稿日期: 2023-08-07 修回日期: 2023-10-20 发布日期: 2023-12-12

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摘要

公路、铁路、水路等货物运输方式的高效衔接是多式联运发展的核心,多式联运联接共性关键技术是实现不同货物运输方式衔接的基础,构建多式联运联接共性关键技术体系有助于推动多式联运高质量发展。本文在分析国内外多式联运发展现状的基础上,剖析了我国多式联运发展的瓶颈问题及技术突破点,提出了多式联运联接共性关键技术体系构建思路,搭建了涵盖基础网络、载运工具、数据信息、运输组织、标准规范、枢纽布局等六大模块的技术体系。结合我国实际,提出了我国多式联运技术的发展建议:做好顶层设计,为多式联运联接技术发展提供引领;加快数字化建设进程,为多式联运联接打牢技术底座;推进标准体系建设,为多式联运联接技术发展破除尺度壁垒;制定联运设施衔接的支持政策,为多式联运联接技术发展提供资金保障;加强协调机制建设,为多式联运联接打通管理屏障。

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参考文献

[ 1 ] 依绍华‍. 新发展格局下多式联运发展模式及对策体系——基于供应链集成视角 [J]. 河北学刊, 2022, 42(5): 146‒154.
Yi S H. Development mode and countermeasure system of multimodal transport under the new development pattern [J]. Hebei Academic Journal, 2022, 42(5): 146‒154.

[ 2 ] Archetti C, Peirano L, Speranza M G. Optimization in multimodal freight transportation problems: A survey [J]. European Journal of Operational Research, 2022, 299(1): 1‒20.

[ 3 ] 彭聪‍. 双循环视角下考虑时间价值的物流业多式联运网络布局优化——以西部陆海新通道枢纽城市为例 [J]. 商业经济研究, 2022 (18): 98‒102.
Peng C. The optimization of multimodal transport network layout in logistics industry considering time value from the perspective of dual circulation—Taking the hub city of the new western land-sea corridor as an example [J]. Journal of Commercial Economics, 2022 (18): 98‒102.

[ 4 ] 本书编写组‍. 国家综合立体交通网规划纲要学习读本 [M]. 北京: 人民交通出版社, 2021.
The Book Writing Team. National comprehensive three dimensional transportation network planning outline study book [M] Beijing: People´s Communications Press Co., Ltd., 2021.

[ 5 ] 中华人民共和国国务院‍. “十四五”现代综合交通运输体系发展规划 [EB/OL]. (2021-01-18)‍[2023-06-20]. https://www.gov.cn/zhengce/content/2022-01/18/content_5669049.htm.
The State Council of the People´s Republic of China. The 14th Five-Year Plan for the development of a modern comprehensive transportation system [EB/OL]. (2021-01-18)[2023-06-20]. https://www.gov.cn/zhengce/content/2022-01/18/content_5669049.htm.

[ 6 ] 中华人民共和国交通运输部. 绿色交通“十四五”发展规划 [EB/OL]. ‍(2021-20-29)‍[2023-06-20]. ‍https://www.‍gov.cn/zhengce/zhengceku/2022-01/21/content_5669662.htm.
Ministry of Transport of the People´s Republic of China. The "14th Five-Year" development plan of green transportation [EB/OL]. (2021-01-18)[2023-06-20]. https://www.gov.cn/zhengce/zhengceku/2022-01/21/content_5669662.htm.

[ 7 ] 冯芬玲, 孙楠佳‍. 考虑时间价值的中非多式联运路径与出海港选择 [J]. 交通运输系统工程与信息, 2022, 22(2): 45‒53.
Feng F L, Sun N J. Time value based route and port selection for China and Africa multimodal transportation [J]. Journal of Transportation Systems Engineering and Information Technology, 2022, 22(2): 45‒53.

[ 8 ] 张玉召‍. 快捷货运服务网络设计研究综述 [J]. 交通运输系统工程与信息, 2021, 21(3): 1‒12.
Zhang Y Z. Review of service network design for express freight transportation [J]. Journal of Transportation Systems Engineering and Information Technology, 2021, 21(3): 1‒12.

[ 9 ] 尹传忠, 邱慧妍, 柯媛定, 等‍. 区域主枢纽港多式联运网络协同优化 [J]. 铁道科学与工程学报, 2022, 19(1): 63‒70.
Yin C Z, Qiu H Y, Ke Y D, et al. Collaborative optimization for multimodal transport network of regional main hub ports [J]. Journal of Railway Science and Engineering, 2022, 19(1): 63‒70.

[10] Chen J, Zhang Y, Liu L. Vulnerability analysis of multimodal transport networks: Based on complex network theory [J]. Journal of Southeast University (English Edition), 2021, 37(2): 209‒215.

[11] 张利, 赵守香, 张铎‍. 我国多式联运存在问题及发展策略 [J]. 现代管理科学, 2020 (2): 62‒64.
Zhang L, Zhao S X, Zhang D. Problems and development strategies of multimodal transport in China [J]. Modern Management Science, 2020 (2): 62‒64.

[12] Bertsimas D, Ng Y S, Yan J L. Joint frequency-setting and pricing optimization on multimodal transit networks at scale [J]. Transportation Science, 2020, 54(3): 839‒853.

[13] 朱文英, 赵雨, 张红英, 等‍. 时间窗约束下多式联运企业收益分配优化模型研究 [J]. 公路交通科技, 2022, 39(12): 247‒254.
Zhu W Y, Zhao Y, Zhang H Y, et al. Study on income distribution optimization model of multimodal transport enterprise under time window constraint [J]. Journal of Highway and Transportation Research and Development, 2022, 39(12): 247‒254.

[14] 焦巍巍, 刘彤‍. 基于区块链技术的多式联运数字化单证研究 [J]. 计算机应用与软件, 2021, 38(8): 28‒32.
Jiao W W, Liu T. Intermodal transport digital waybill based on blockchain technology [J]. Computer Applications and Software, 2021, 38(8): 28‒32.

[15] 曹译文‍. 综合运输立法与多式联运立法的协调向度 [J]. 河北法学, 2019, 37(1): 181‒188.
Cao Y W. The coordination dimension between integrated transport law and multimodal transport law [J]. Hebei Law Science, 2019, 37(1): 181‒188.

[16] 黄敏珍, 王瑞民, 林晓蕾‍. 多式联运数据交换区块链技术应用研究 [J]. 铁道运输与经济, 2021, 43(2): 75‒81.
Huang M Z, Wang R M, Lin X L. A study of the application of block chain technology on multimodal transportation data exchange [J]. Railway Transport and Economy, 2021, 43(2): 75‒81.

[17] 包起帆‍. 基于物联网的集装箱感知系统研究与应用 [J]. 中国工程科学, 2011, 13(3): 19‒23.
Bao Q F. Research and application of the container sense system based on IoT [J]. Strategic Study of CAE, 2011, 13(3): 19‒23.

[18] 程琳, 朱晓峰, 陆敬筠‍. 基于大数据的共享物流信息平台模型研究 [J]. 科技管理研究, 2018, 38(15): 234‒238.
Cheng L, Zhu X F, Lu J Y. Research on shared logistics information platform model based on big data [J]. Science and Technology Management Research, 2018, 38(15): 234‒238.

[19] Ding L Q. Multimodal transport information sharing platform with mixed time window constraints based on big data [J]. Journal of Cloud Computing, 2020, 9(1): 11.

[20] Molero G D, Santarremigia F E, Poveda-Reyes S, et al. Key factors for the implementation and integration of innovative ICT solutions in SMEs and large companies involved in the multimodal transport of dangerous goods [J]. European Transport Research Review, 2019, 11(1): 28.

[21] Wang Y L, Sarkis J. Emerging digitalisation technologies in freight transport and logistics: Current trends and future directions [J]. Transportation Research Part E: Logistics and Transportation Review, 2021, 148: 102291.

[22] 刘文茜, 朱晓宁, 王力, 等‍. 基于析取图的铁水联运港口设备协同调度方法 [J]. 铁道学报, 2022, 44(8): 14‒24.
Liu W Q, Zhu X N, Wang L, et al. Disjunctive graph based integrated scheduling method for port handling equipment for railway-waterway intermodal transportation [J]. Journal of the China Railway Society, 2022, 44(8): 14‒24.

[23] Chen X C, He S W, Zhang Y X, et al. Yard crane and AGV scheduling in automated container terminal: A multi-robot task allocation framework [J]. Transportation Research Part C: Emerging Technologies, 2020, 114: 241‒271.

[24] 任建伟, 孟祥冬, 陈春花, 等‍. 多式联运网络中的托盘共用调度方法 [J]. 西南交通大学学报, 2020, 55(3): 1‒3, 612‒619.
Ren J W, Meng X D, Chen C H, et al. Methodologies of pallet allocation over pallet pool in intermodal transportation network [J]. Journal of Southwest Jiaotong University, 2020, 55(3): 1‒3, 612‒619.

[25] 霍凯歌, 张亚琦, 胡志华‍. 自动化集装箱码头多载AGV调度问题研究 [J]. 大连理工大学学报, 2016, 56(3): 244‒251.
Huo K G, Zhang Y Q, Hu Z H. Research on scheduling problem of multi-load AGV at automated container terminal [J]. Journal of Dalian University of Technology, 2016, 56(3): 244‒251.

[26] 张超德, 李冬, 周炯, 等‍. 欧美多式联运技术及其相关标准分析 [J]. 铁道机车车辆, 2022, 42(1): 10‒18.
Zhang C D, Li D, Zhou J, et al. Analysis of intermodal transport technology and related standards in of European and American [J]. Railway Locomotive & Car, 2022, 42(1): 10‒18.

[27] 诸葛恒英, 齐向春, 周浪雅‍. 美国铁路多式联运发展的启示 [J]. 铁道运输与经济, 2016, 38(12): 69‒73.
Zhuge H Y, Qi X C, Zhou L Y. Inspiration of American railway intermodal transport development [J]. Railway Transport and Economy, 2016, 38(12): 69‒73.

[28] Freight Department of International Union of Railways. 2022 report on combined transport in Europe [R]. Paris: International Union of Railways, 2023.

[29] Nechaev A, Skorobogatova Y, Nechaeva M. Toolkit for the transportation and logistics infrastructure [J]. Transportation Research Procedia, 2021, 54: 637‒644.

[30] Gayialis S P, Kechagias E P, Konstantakopoulos G D. A city logistics system for freight transportation: Integrating information technology and operational research [J]. Operational Research, 2022, 22(5): 5953‒5982.

[31] 中华人民共和国交通运输部‍. 2022年交通运输行业发展统计公报 [EB/OL]. (2023-06-16)[2023-09-20]. https://xxgk.mot.gov.cn/2020/jigou/zhghs/202306/t20230615_3847023.html.
Ministry of Transport of the People´s Republic of China. Statistical communiqué on the development of the transportation industry in 2022 [EB/OL]. (2023-06-16)[2023-09-20]. https://xxgk.mot.gov.cn/2020/jigou/zhghs/202306/t20230615_3847023.html.

[32] 沈冰, 沈忠刚, 张锦黎‍. 我国多式联运"一单制”模式构建研究 [J]. 铁道运输与经济, 2018, 40(5): 20‒23, 30.
Shen B, Shen Z G, Zhang J L. A study on the developing multimodal transport under a single contract in China [J]. Railway Transport and Economy, 2018, 40(5): 20‒23, 30.

[33] 李慧芳, 胡大伟, 陈希琼, 等‍. 考虑碳排放的混合轴辐式多式联运网络枢纽扩增选址 ‒ 路径问题 [J]. 交通运输工程学报, 2022, 22(4): 306‒321.
Li H F, Hu D W, Chen X Q, et al. Expanding hub location-routing problem for hybrid hub-and-spoke multimodal transport network considering carbon emissions [J]. Journal of Traffic and Transportation Engineering, 2022, 22(4): 306‒321.

[34] 曹菁菁, 雷阿会, 刘清, 等‍. 虚实融合驱动智慧港口发展研究 [J]. 中国工程科学, 2023, 25(3): 239‒250.
Cao J J, Lei A H, Liu Q, et al. Smart port development driven by virtual-real integration [J]. Strategic Study of CAE, 2023, 25(3): 239‒250.

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