DocumentCode
3726468
Title
Aircraft 4D Trajectories Planning Under Uncertainties
Author
Supatcha Chaimatanan;Daniel Delahaye;Marcel Mongeau
Author_Institution
ENAC, MAIAA, Toulouse, France
fYear
2015
Firstpage
51
Lastpage
58
Abstract
In the new air traffic management paradigm called trajectory-based operation concept, this paper presents a strategic 4D aircraft trajectory planning approach aiming at minimizing interaction between aircraft trajectories for a given day. The proposed methodology allocates an alternative departure time, a horizontal flight path, and a flight level to each flight at a country and a continent scale. Uncertainties of aircraft position and arrival time on its curvilinear abscissa are taken into account in the trajectory planning process. The proposed approach optimizes the 4D trajectory of each aircraft so as to minimize the interaction between trajectories. A hybrid-metaheuristic optimization algorithm has been developed to solve this large-scale mixed-variable optimization problem. The algorithm is implemented and tested with real air traffic data taking into account uncertainty over the French and the European airspace for which a conflict-free and robust 4D trajectory plan is produced.
Keywords
"Aircraft","Trajectory","Uncertainty","Optimization","Planning","Time-domain analysis","Atmospheric modeling"
Publisher
ieee
Conference_Titel
Computational Intelligence, 2015 IEEE Symposium Series on
Print_ISBN
978-1-4799-7560-0
Type
conf
DOI
10.1109/SSCI.2015.18
Filename
7376591
Link To Document