中文核心期刊
CSCD来源期刊
中国科技核心期刊
RCCSE中国核心学术期刊

Journal of Chongqing Jiaotong University(Natural Science) ›› 2026, Vol. 45 ›› Issue (2): 76-84.DOI: 10.3969/j.issn.1674-0696.2026.02.10

• Traffic & Transportation+Artificial Intelligence • Previous Articles    

Influencing Factors of Flight Cut-off Time at Civil Transport Airports

LI Mingjie, FENG Sirong, YIN Tiance   

  1. (College of Airport, Civil Aviation Flight University of China, Guanghan 618307, Sichuan, China)
  • Received:2025-03-26 Revised:2025-08-25 Published:2026-03-02

民用运输机场航班截载时间影响因素研究

李明捷, 冯思蓉, 殷天策   

  1. (中国民用航空飞行学院 机场学院, 四川 广汉618307)
  • 作者简介:李明捷(1981—),女,新疆奎屯人,副教授,硕士,主要从事机场运行管理方面的研究。E-mail: lmj102519@163.com 通信作者:冯思蓉(2001—),女,云南楚雄人,硕士研究生,主要从事机场运行管理方面的研究。 E-mail:fengsirong0418@163.com
  • 基金资助:
    四川省民航机场智慧运营与运维工程研究中心自主研究课题项目(JCZX 2023ZZ03)

Abstract: The rational setting of flight cut-off time plays a significant role in enhancing airport service efficiency and improving passengers aviation travel experience. Thereby, exploring its impact mechanism can provide a theoretical reference for airports to formulate and optimize flight cut-off time according to demand. Firstly, an influencing factor system for flight cut-off time was established, which was based on literature research and survey results that identified 15 primary influencing factors. Secondly, by combining Grey-DEMATEL-TAISM, the causality degree and centrality ranking of each influencing factor were calculated, and then two root cause key influencing factors, four sensitivity key influencing factors, and a set of key influencing factors with a mutual causal relationship were determined. The research findings indicate that passenger flow line design, departure resource allocation, flight ground support services, ground support equipment configuration, and collaborative operation levels are significant factors affecting flight cut-off time. Among these, the passenger flow line design is a strong driving factor that requires particular attention in operational management. Passenger throughput and terminal configuration, located at the bottom of the topology, serve as root influencing factors, which can be improved by methods such as reasonably predicting throughput during the early-planning stage and replacing large single-building terminals with one airport and multiple terminals. The classification of factors within the causal loop encompasses passenger flow, baggage flow and flight flow. It is essential to pay full attention to the containment relationships among these three systems and enhance airport operational efficiency through collaborative management.

Key words: traffic and transportation engineering; airport operation and management; flight cut-off time; DEMATEL; TAISM; grey number theory

摘要: 航班截载时间的合理设置对提升机场服务效率、提高旅客航空出行体验感等方面发挥着重要作用,探究其影响机制,可为机场按需制定及优化航班截载时间提供一定的理论参考依据。首先在文献研究和调研结果确定15个主要影响因素的基础上建立航班截载时间影响因素体系;其次,将Grey-DEMATEL-TAISM相结合,计算各影响因素原因度、中心度排序,进而确定2个根源性关键影响因素、4个敏感性关键影响因素和1组互为因果关系的关键影响因素。研究结果表明:旅客流线设计、离港资源配置、航班地面保障服务、地面保障设备配置、协同运行水平是影响航班截载时间的重要因素,其中旅客流线设计是强驱动型因素,运行管理中需重点关注;位于拓扑图底层的旅客吞吐量、航站楼构型是根源影响因素,可通过前期规划阶段合理预测吞吐量,采用一场多楼替代大型单体候机楼等方式改进;因果回路中的因素所属分类涵盖旅客流、行李流和航班流,需充分重视3个系统间的牵制关系,通过协同管理来提升机场的运行效率。

关键词: 交通运输工程 ; 机场运行管理;航班截载时间;决策与评价实验室法;综合对抗解释结构模型;灰数理论

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