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Robust flight planning impact assessment considering convective phenomena

  • Kurt Eschbacher
  • , Carl-Herbert Rokitansky
  • , Javier García-Heras*
  • , Manuel Soler
  • , Daniel González-Arribas
  • , Alfonso Valenzuela
  • , Antonio Franco
  • , Damián Rivas
  • *Korrespondierende/r Autor/-in für diese Arbeit

Publikation: Beitrag in FachzeitschriftArtikelPeer-reviewed

Abstract

Thunderstorms are one of the leading causes of Air Traffic Management delays. In this paper, we assess how incorporating convective information into flight planning algorithms can lead to reductions in reroutings due to storm encounters during the execution of the flight. We use robust open-loop optimal control methodology at the flight planning level and incorporate meteorological uncertainties based on Ensemble Prediction System forecasts. Convective risk areas can be derived from the latter to be included in the objective function. At the execution level, the planned trajectories are included in an air traffic simulator (NAVSIM) under observed weather (wind and storms). In this simulation process, track modifications might be triggered in case of encountering an observed thunderstorm. A tool termed DIVMET based on pathfinding algorithms has been integrated into NAVSIM is considered to that end. Results show that planning robust trajectories (avoiding thus convective areas) reduces the number of storms encounters and increases predictability. This increase in predictability is at a cost in terms of fuel and time, also quantified.
OriginalspracheEnglisch
FachzeitschriftTransportation Research, Part C: Emerging Technologies
Jahrgang2021
Ausgabenummer123
PublikationsstatusVeröffentlicht - Feb. 2021

Schlagwörter

  • Robust flight-planning
  • Convective weather
  • Simulation

Systematik der Wissenschaftszweige 2012

  • 102 Informatik
  • 101 Mathematik
  • 103 Physik, Astronomie

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