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Title: A two-stage robust optimisation for terminal traffic flow problem
Authors: Ng, KKH 
Lee, CKM 
Chan, FTS 
Chen, CH
Qin, Y
Issue Date: Apr-2020
Source: Applied soft computing, Apr. 2020, v. 89, 106048
Abstract: Airport congestion witnesses potential conflicts: insufficient terminal airspace and delay propagation within scrambled the competition in the terminal manoeuvring area. Re-scheduling of flights is needed in numerous situations, heavy traffic in air segments, holding patterns, runway schedules and airport surface operations. Robust optimisation for terminal traffic flow problem, providing a practical point of view in hedging uncertainty, can leverage the adverse effect of uncertainty and schedule intervention. To avoid delay propagation throughout the air traffic flow network and reduce the vulnerability to disruption, this research adopts a two-stage robust optimisation approach in terminal traffic flow. It further enhances the quality of Pareto-optimality Benders-dual cutting plane based on core point approximation in the second stage recourse decision. The efficiency of the cutting plane algorithm is evaluated by a set of medium sized real-life scenarios. The numerical results show that the proposed scheme outperforms the well-known Pareto-optimal cuts in Benders-dual method from the literature.
Keywords: Benders cuts selection scheme
Dynamic relative interior point
Robust optimisation
Terminal traffic flow problem
Publisher: Elsevier
Journal: Applied soft computing 
ISSN: 1568-4946
EISSN: 1872-9681
DOI: 10.1016/j.asoc.2019.106048
Rights: © 2020 Elsevier B.V. All rights reserved.
© 2020. This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://creativecommons.org/licenses/by-nc-nd/4.0/.
The following publication Ng, K. K. H., Lee, C. K. M., Chan, F. T. S., Chen, C.-H., & Qin, Y. (2020). A two-stage robust optimisation for terminal traffic flow problem. Applied Soft Computing, 89, 106048 is available at https://dx.doi.org/10.1016/j.asoc.2019.106048.
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