Abstract
Trajectory optimization has been an active area of research for air transport studies for several decades. But almost all flight optimizers proposed in the literature remain close-sourced, which presents a major disadvantage for the advancement of scientific research. This optimization depends on aircraft performance models, emission models, and operational constraints. In this paper, I present a fully open trajectory optimizer, OpenAP.top, which offers researchers easy access to the complex but efficient non-linear optimal control approach. Full flights can be generated without specifying flight phases, and specific flight segments can also be independently created. The optimizer adapts to meteorological conditions and includes conventional fuel and cost index objectives. Based on global warming and temperature potentials, its climate objectives form the basis for climate optimal air transport studies. The optimizer’s performance and uncertainties under different factors like varying mass, cost index, and wind conditions are analyzed. Overall, this new optimizer brings a high performance for optimal trajectory generations by providing four-dimensional and wind-enabled full-phase optimal trajectories in a few seconds.
Reference33 articles.
1. Air traffic simulation with 4D multi-criteria optimized trajectories;Rosenow;Proceedings of the 2017 Winter Simulation Conference (WSC),2017
2. Getting to Grips with Cost Index;Airbus,1998
3. Fuel Conservation Strategies: Cost index explained;Roberson;Boeing Aero Q.,2007
4. Climate optimized air transport;Matthes,2012
5. ATM4E: A concept for environmentally-optimized aircraft trajectories;Matthes;Proceedings of the 2nd Greener Aviation 2016 Conference,2016
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