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2024 | OriginalPaper | Chapter

Fuel Efficient Flight Level Assignments Under Wind Uncertainties for the Conflict Resolution Problem at the En-Route Phase

Authors : Ramazan Kursat Cecen, Kadir Dönmez

Published in: Green Approaches in Sustainable Aviation

Publisher: Springer Nature Switzerland

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Abstract

This chapter delves into the conflict resolution problem (CRP) in air traffic management, focusing on the en-route phase. It explores three approaches—speed change, heading angle change, and flight level change—with a particular emphasis on flight level change (FLC) due to its complexity. The study highlights the significance of considering wind uncertainties to ensure efficient and safe air traffic management. It introduces a two-stage stochastic mathematical model that integrates both wind direction and speed uncertainties, comparing it with deterministic and expected value approaches. The model uses real wind data from the İZMİR station to quantify results and solve various traffic samples. The study demonstrates that the stochastic model provides an average of 4.17% fuel savings compared to the deterministic approach, showcasing its potential to enhance air traffic management practices.

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Literature
go back to reference Dönmez, K., & Cecen, R. K. (2022). Comparison of the speed change and vector maneuver techniques for the conflict resolution problem: Fuel and flight time analysis. In ISEAS’22 (International Symposium on Electric Aircraft and Autonomus Systems). Dönmez, K., & Cecen, R. K. (2022). Comparison of the speed change and vector maneuver techniques for the conflict resolution problem: Fuel and flight time analysis. In ISEAS’22 (International Symposium on Electric Aircraft and Autonomus Systems).
go back to reference Dönmez, K., Cetek, C., & Kaya, O. (2022). Air traffic management in parallel-point merge systems under wind uncertainties. Journal of Air Transport Management, 4, 102268.CrossRef Dönmez, K., Cetek, C., & Kaya, O. (2022). Air traffic management in parallel-point merge systems under wind uncertainties. Journal of Air Transport Management, 4, 102268.CrossRef
go back to reference Hernández-Romero, E., Valenzuela, A., & Rivas, D. (2017). Probabilistic aircraft conflict detection and resolution considering wind uncertainty. SESAR Innovation Days. Hernández-Romero, E., Valenzuela, A., & Rivas, D. (2017). Probabilistic aircraft conflict detection and resolution considering wind uncertainty. SESAR Innovation Days.
Metadata
Title
Fuel Efficient Flight Level Assignments Under Wind Uncertainties for the Conflict Resolution Problem at the En-Route Phase
Authors
Ramazan Kursat Cecen
Kadir Dönmez
Copyright Year
2024
DOI
https://doi.org/10.1007/978-3-031-33118-3_10