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Optimization of Airport Surface Traffic: A Case-study of Incheon International Airport
Author(s) -
Yeonju Eun,
Daekeun Jeon,
Hanbong Lee,
Yoon C. Jung,
Zhifan Zhu,
Myeong-Sook Jeong,
Hyounkyong Kim,
Eunmi Oh,
SungKwon Hong
Publication year - 2017
Publication title -
14th aiaa aviation technology, integration, and operations conference
Language(s) - English
Resource type - Conference proceedings
DOI - 10.2514/6.2017-4258
Subject(s) - international airport , transport engineering , asde x , air traffic control , business , engineering , aerospace engineering
This study aims to develop a controllers decision support tool for departure and surface management of ICN. Airport surface traffic optimization for Incheon International Airport (ICN) in South Korea was studied based on the operational characteristics of ICN and airspace of Korea. For surface traffic optimization, a multiple runway scheduling problem and a taxi scheduling problem were formulated into two Mixed Integer Linear Programming (MILP) optimization models. The Miles-In-Trail (MIT) separation constraint at the departure fix shared by the departure flights from multiple runways and the runway crossing constraints due to the taxi route configuration specific to ICN were incorporated into the runway scheduling and taxiway scheduling problems, respectively. Since the MILPbased optimization model for the multiple runway scheduling problem may be computationally intensive, computation times and delay costs of different solving methods were compared for a practical implementation. This research was a collaboration between Korea Aerospace Research Institute (KARI) and National Aeronautics and Space Administration (NASA).

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