
航运安全保障智慧化管控模式发展研究 ——以上海市为例
徐亮, 徐青, 王欣安, 王鸿东, 刘希, 査伊倩
中国工程科学 ›› 2023, Vol. 25 ›› Issue (6) : 160-169.
航运安全保障智慧化管控模式发展研究 ——以上海市为例
Intelligent Governance Mode for Shipping Safety Assurance: Taking Shanghai as an Example
航运业是我国经济社会发展重要的基础产业,航运安全保障体系高效运行是实现其健康可持续发展的关键,立足智能化时代促进我国航运安全保障智慧化发展,是实现体系结构优化调整的必由之路。着眼于我国航运智慧化管控模式的发展需求,本文综述了国内外先进港口城市航运安全保障的现状和发展趋势;厘清了数字孪生、大数据、智能船舶、无人船、船联网等新兴智能技术在我国航运安全保障中的应用方向;以上海市为例,分析了航运安全保障的总体态势,提出了一体化的上海市航运安全保障智慧化管控创新模式和“五层两面”目标架构;研究从加强顶层布局共建“基础底座”、强化共享协作“涉海一盘棋”、配套政策促进技术发展、建立新法规新机制等方面提出具体工程和政策发展建议,以期为智能技术与航运安全保障交叉研究、航运安全保障高水平发展提供借鉴。
The shipping industry is crucial for national economic and social development of China. The efficient operation of the shipping safety assurance system is key to the sustainable development of the shipping industry. Promoting the intelligent development of the industry is vital for the optimization and adjustment of the conventional shipping safety assurance system. Focusing on the demand of China for intelligent governance modes for shipping security assurance, this study reviews the current status and development trend of shipping security assurance in advanced port cities in China and abroad. It then clarifies the application directions of digital twins, big data, intelligent ships, unmanned ships, Internet of ships, and other emerging intelligent technologies to shipping security assurance. Using Shanghai as an example, we analyze the overall situation regarding shipping safety assurance of the city, and propose an integrated mode for intelligent governance and its target framework that consists of five layers (infrastructure, information perception, support service, smart service, and smart decision layers) and two aspects (regulations and standards as well as personnel system). Furthermore, several specific engineering and policy suggestions are proposed, including strengthening the overall layout to strengthen the infrastructure for intelligent development, enhancing collaboration among related apartments,formulating policies to support the development of intelligent technologies, and establishing new mechanisms. This study is expected to provide references for the interdisciplinary research on intelligent technologies and shipping safety assurance and for the highquality development of shipping security assurance.
航运安全保障 / 管控模式 / 大数据 / 数字孪生 / 智能船舶 / 船联网
shipping safety assurance / governance mode / big data / digital twin / intelligent ship / Internet of ships
[1] |
交通运输部海事局. 水运“十四五”发展规划 [Z]. 北京: 交通运输部海事局, 2022.
|
[2] |
交通运输部海事局. 交通运输部海事局关于印发《全要素水上“大交管”建设工作方案》的通知 [Z]. 北京: 交通运输部海事局, 2021.
|
[3] |
上海市人民政府. 上海市人民政府关于印发《上海国际航运中心建设“十四五”规划》的通知[Z]. 上海: 上海市人民政府, 2021.
|
[4] |
中华人民共和国上海海事局. 海事统计数据 [EB/OL]. [2023-07-23]. https://www.sh.msa.gov.cn/hstjsj/index.jhtml.
|
[5] |
刘伟, 周国祥. 从上海VTS升级改造谈VTS未来发展趋势 [J]. 世界海运, 2021, 44(6): 30‒35.
|
[6] |
曹德胜. 关于“陆海空天”一体化水上交通运输安全保障体系构建的初步思考 [J]. 水上安全, 2022 (4): 1‒7, 25.
|
[7] |
许骐. 构建适应“陆海空天”一体化水上交通运输安全保障体系的智能航海保障体系的探索与实践 [J]. 中国海事, 2023 (3): 9‒10.
|
[8] |
徐春. 推动智能船舶发展 构建安全水上交通环境 [J]. 中国海事, 2023 (1): 6‒8.
|
[9] |
严新平, 李晨, 刘佳仑, 等. 新一代航运系统体系架构与关键技术研究 [J]. 交通运输系统工程与信息, 2021, 21(5): 22‒29, 76.
|
[10] |
严新平, 刘佳仑, 张煜, 等. 智能航运的研究现状与展望 [J]. 现代交通与冶金材料, 2022, 2(1): 7‒18.
|
[11] |
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.
|
[12] |
刘怀汉, 曾晖, 周俊安, 等. 内河航道助航系统智能化技术研究现状与展望 [J]. 水利水运工程学报, 2015 (6): 82‒87.
|
[13] |
罗本成, 解玉玲. 欧洲内河航运综合信息服务系统概述 [J]. 水运管理, 2007, 29(2): 37‒39.
|
[14] |
王荣波. 天津港建设世界一流智慧港口新路径 [J]. 施工企业管理, 2022 (8): 108‒110.
|
[15] |
张意, 周然, 王壹省. 新时期水运基础设施科技创新 [M]. 北京: 化学工业出版社, 2022.
|
[16] |
徐亮, 郭力峰, 钟琮玮, 等. 无人舰船机舱智能化技术应用探析 [J]. 中国舰船研究, 2022, 17(6): 15‒21, 47.
|
[17] |
Zhou C H, Xu J, Miller-Hooks E, et al. Analytics with digital-twinning: A decision support system for maintaining a resilient port [J]. Decision Support Systems, 2021, 143: 113496.
|
[18] |
中国船级社. 智能船舶规范2023 [R]. 北京: 中国船级社, 2023.
|
[19] |
石利勇, 彭中波, 谭建平, 等. 基于船联网的内河船舶信息服务技术研究 [J]. 船舶物资与市场, 2021 (1): 85‒88.
|
[20] |
王思佳. 船联网: 智慧航运底层逻辑 [J]. 中国船检, 2021 (4): 19‒23.
|
[21] |
上海市港口管理局. 上海港口章程 [Z]. 上海: 上海市港口管理局, 2004.
|
/
〈 |
|
〉 |