Delay in the Air or Detour on the Ground?—A Case Study in Guangzhou Baiyun International Airport

IF 2.1 3区 工程技术 Q2 ENGINEERING, AEROSPACE Aerospace Pub Date : 2023-12-22 DOI:10.3390/aerospace11010010
Zhuoming Du, Junfeng Zhang, Zhao Ma, Jiaxin Xu
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Abstract

Collaboration between terminal airspace and airport surface operation shows an increasing significance for the best efficiency of both parts of the air traffic management domain. Runways play a critical role in connecting the two parts for departure and arrival aircraft. Suppose the gate and the entry fix of an aircraft are predetermined according to the flight plan, and they are on the opposite side of the airport terminal. The aircraft will either spend more time (i.e., delay in the air) landing on a runway close to its gate or take a longer distance (i.e., detour on the ground) taxiing to its gate if a runway close to its entry fix is assigned. This paper proposes a runway assignment model considering terminal airspace operation and airport surface movement simultaneously to discover how runway assignments can affect integrated operations. Four different runway assignment schemes are applied in this model. Subsequently, a metaheuristic method is proposed to solve the model. Furthermore, the historical taxiing and flight time data are analyzed to demonstrate the potential benefits of runway reassignment. Finally, the results show that the free assignment of the runway stands out among the four schemes, not only in the performance of terminal airspace operation (lower flight time) but also in airport surface movement (lower pushback delay, taxi time).
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空中延误还是地面迂回?--广州白云国际机场案例研究
终端空域和机场地面运行之间的合作对于空中交通管理领域两部分的最佳效率而言日益重要。跑道在连接出发和到达飞机的两个部分中发挥着关键作用。假设飞机的登机口和进港点是根据飞行计划预先确定的,并且位于机场航站楼的两侧。如果分配的跑道靠近飞机的进港点,那么飞机将花费更多时间(即空中延误)降落在靠近进港点的跑道上,或者花费更长的距离(即地面绕行)滑行到进港点。本文提出了一个跑道分配模型,同时考虑了终端空域运行和机场地面移动,以探索跑道分配如何影响综合运行。该模型采用了四种不同的跑道分配方案。随后,提出了一种元启发式方法来求解该模型。此外,还对历史滑行和飞行时间数据进行了分析,以证明跑道重新分配的潜在好处。最后,研究结果表明,在四种方案中,跑道自由分配方案不仅在终端空域运行性能(飞行时间减少)方面表现突出,而且在机场地面运动(推回延迟、滑行时间减少)方面也表现突出。
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来源期刊
Aerospace
Aerospace ENGINEERING, AEROSPACE-
CiteScore
3.40
自引率
23.10%
发文量
661
审稿时长
6 weeks
期刊介绍: Aerospace is a multidisciplinary science inviting submissions on, but not limited to, the following subject areas: aerodynamics computational fluid dynamics fluid-structure interaction flight mechanics plasmas research instrumentation test facilities environment material science structural analysis thermophysics and heat transfer thermal-structure interaction aeroacoustics optics electromagnetism and radar propulsion power generation and conversion fuels and propellants combustion multidisciplinary design optimization software engineering data analysis signal and image processing artificial intelligence aerospace vehicles'' operation, control and maintenance risk and reliability human factors human-automation interaction airline operations and management air traffic management airport design meteorology space exploration multi-physics interaction.
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