Author:
Wang Shuce,Hu Minghua,Zhao Zheng,Shu Jie,Zhu Xuhao
Abstract
Abstract
The update and iteration of the airport facilities completed in the runway operation system raise a request for more scientific control operation restrictions. In the old, optimized method of flight slot, no consideration was given to the runway operation strategy. As a result, the flight slot failed to meet the operation restriction and would incur unavoidable delays. This paper sets the research objective as the system composed of an apron, runway entrance and exit, and parallel runway. It focuses on matching the corresponding relationship between time and space of flights in the studied system. It establishes three flight slot optimization models to meet the requirements of isolated operation, semi-mixed operation, and mixed operation, respectively. On a practical level, the computer simulation software AirTOp is employed for simulation verification in the example of Wuhan Tianhe Airport. The results show that the delay in the isolation operation mode is reduced by about 59%, the semi-mixed operating mode reduces delays by about 48%, and mixed operating mode delays are reduced by approximately 52%. Therefore, it proves its feasibility of effective reduction in overall delay and its ability to provide decision support for the allocation of the flight time resource in parallel dual runway airports.
Subject
Computer Science Applications,History,Education
Reference7 articles.
1. The impact of heterogeneous arrival and departure rates of flights on runway configuration optimization[J];Kam,2020
2. On the Impact of Scheduling Limits: A Case Study at Newark Liberty International Airport[J];Nikolas;Transportation Science,2016
3. Minding the gap: Optimizing airport schedule displacement and acceptability[J];Zografos;Transportation Research Part A: Policy and Practice,2018
4. Research on Flight Schedule Optimization Based on Acceptable Adjustment Level[J];Wang;Journal of Wuhan University of Technology (Transportation Science & Engineering),2019
5. Strategic Flight Schedule Optimization Technology for Actual Operation[J];Ke;Science Technology and Engineering,2021
Cited by
2 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献