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Network-wide flight trajectories planning in China using an improved genetic algorithm

  • Yongxi Li*
  • , Kaiquan Cai
  • , Su Yan
  • , Yanwu Tang
  • , Yanbo Zhu
  • *Corresponding author for this work
  • Beihang University
  • Aviation Data Communication Corporation

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

With the rapid development of Chinese air transportation industry, air traffic becomes increasingly congested thus further worsen the delay problem. As an appealing countermeasure, the Network-wide Flight Trajectories Planning (NFTP) could provide a pre-tactical solution which reduces airspace congestion and flight delay by optimizing the 4D trajectories of all flights in the entire airspace. Notwithstanding, a typical NFTP problem could involve a large number of decision variables with high dimensions. In this paper, therefore, we formulate a single-objective 4D trajectories planning problem to minimize flight delay with limited flight conflicts. In addition, an improved Genetic Algorithm is proposed to handle the large-scale constrained optimization problem. To conquer the lack of realistic factors in the previous work, we present a systematic fast-time simulation and validation framework which is able to demonstrate the improvement of the proposed NFTP solution. Finally, we conduct the validation by a fast-time simulation software called AirTOp with real flight plans over Chinese airspace. The results show that the congestion and flight delay can be reduced in the real operation by the optimization model we proposed.

Original languageEnglish
Title of host publication35th DASC Digital Avionics Systems Conference 2016, DASC 2016 - Proceedings
PublisherInstitute of Electrical and Electronics Engineers Inc.
ISBN (Electronic)9781509056002
DOIs
StatePublished - 7 Dec 2016
Event35th DASC Digital Avionics Systems Conference, DASC 2016 - Sacramento, United States
Duration: 25 Sep 201629 Sep 2016

Publication series

NameAIAA/IEEE Digital Avionics Systems Conference - Proceedings
Volume2016-December
ISSN (Print)2155-7195
ISSN (Electronic)2155-7209

Conference

Conference35th DASC Digital Avionics Systems Conference, DASC 2016
Country/TerritoryUnited States
CitySacramento
Period25/09/1629/09/16

Keywords

  • 4D Trajectory
  • Fast-time Simulation
  • Genetic Algorithm (GA)
  • Network-wide flight planning
  • Validation

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