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Data-Driven Trajectory Uncertainty Quantification For Climbing Aircraft To Improve Ground-Based Trajectory Prediction
- Source :
- Volume: 18, Issue: 2 323-345, Anadolu University Journal of Science and Technology A-Applied Sciences and Engineering, ANADOLU UNIVERSITY JOURNAL OF SCIENCE AND TECHNOLOGY A-Applied Sciences and Engineering, Anadolu University Journal of Science and Technology. A : Applied Sciences and Engineering, Vol 18, Iss 2, Pp 323-345 (2017)
- Publication Year :
- 2016
- Publisher :
- Eskisehir Technical University, 2016.
-
Abstract
- Efficient trajectory prediction tools will be the crucial functions in future trajectory-based operations (TBO). In addition to win and controller actions, uncertainties in climbing flights are major components of prediction errors in a flight trajectory. Due to the operational concerns, aircraft take-off weight and climb speed intent, which are key performance parameters that define climb profiles, is not entirely available to round-based trajectory prediction infrastructure. In the scope of air traffic flow management, sector entry and exit times, including where the climb ends and descending starts, are the main inputs for demand- capacity balancing processes. In this work, we have focused on uncertainties over climb trajectory to quantify and analyze their impact on climb times to cruise altitudes. We have used model-driven data statistical approaches through aircraft flight record data sets (i.e. QAR). As result of this analyze, probabilistic definitions are generated for aircraft take-off weight and speed intent. The regression between these climb parameters and flight distance is acquired to reduce the uncertainty at strategical level. Moreover, reducing climb uncertainty through adaptive uncertainty reduction is also demonstrated at the tactical level of flight. Through the simulations, the impact of reducing the uncertainty in aircraft mass on climb time is illustrated.
- Subjects :
- Uncertainty Reduction
0209 industrial biotechnology
Engineering
Cruise
Mühendislik
ComputerApplications_COMPUTERSINOTHERSYSTEMS
02 engineering and technology
Flight Trajectory Uncertainty,Aircraft Climb,Uncertainty Reduction,Aircraft Performance
Flight Trajectory Uncertainty
020901 industrial engineering & automation
0203 mechanical engineering
Control theory
lcsh:Technology (General)
Uncertainty quantification
Aircraft Performance
Uncertainty reduction theory
Simulation
020301 aerospace & aeronautics
Air traffic flow management
Aircraft Climb
business.industry
Probabilistic logic
General Medicine
lcsh:TA1-2040
Trajectory
lcsh:T1-995
Climb
lcsh:Engineering (General). Civil engineering (General)
business
Subjects
Details
- ISSN :
- 13023160 and 21460205
- Database :
- OpenAIRE
- Journal :
- Volume: 18, Issue: 2 323-345, Anadolu University Journal of Science and Technology A-Applied Sciences and Engineering, ANADOLU UNIVERSITY JOURNAL OF SCIENCE AND TECHNOLOGY A-Applied Sciences and Engineering, Anadolu University Journal of Science and Technology. A : Applied Sciences and Engineering, Vol 18, Iss 2, Pp 323-345 (2017)
- Accession number :
- edsair.doi.dedup.....a77fbea6ae9a709974db094920c10db0