Explore the words cloud of the TBO-MET project. It provides you a very rough idea of what is the project "TBO-MET" about.
The following table provides information about the project.
Coordinator |
UNIVERSIDAD DE SEVILLA
Organization address contact info |
Coordinator Country | Spain [ES] |
Project website | https://tbomet-h2020.com |
Total cost | 488˙750 € |
EC max contribution | 488˙750 € (100%) |
Programme |
1. H2020-EU.3.4.7.1 (Exploratory Research) |
Code Call | H2020-SESAR-2015-1 |
Funding Scheme | SESAR-RIA |
Starting year | 2016 |
Duration (year-month-day) | from 2016-06-01 to 2018-05-31 |
Take a look of project's partnership.
# | ||||
---|---|---|---|---|
1 | UNIVERSIDAD DE SEVILLA | ES (SEVILLA) | coordinator | 137˙500.00 |
2 | PARIS-LODRON-UNIVERSITAT SALZBURG | AT (SALZBURG) | participant | 107˙500.00 |
3 | UNIVERSIDAD CARLOS III DE MADRID | ES (GETAFE (MADRID)) | participant | 107˙500.00 |
4 | METEOSOLUTIONS GMBH | DE (DARMSTADT) | participant | 106˙250.00 |
5 | AGENCIA ESTATAL DE METEOROLOGIA | ES (Madrid) | participant | 30˙000.00 |
In this project the problem of analysing and quantifying the effects of meteorological uncertainty in Trajectory Based Operations is addressed. In particular, two problems are considered: 1) trajectory planning and 2) sector demand analysis, both at the pre-tactical level (up to three hours before departure) and tactical level (during the flight).
In each problem two types of meteorological uncertainty are considered: wind uncertainty and convective zones (including individual storm cells). Weather predictions will be based on Ensemble Prediction Systems and Nowcasts.
At the trajectory scale, the main objective is to assess and improve the predictability of efficient 4D trajectories when weather uncertainty is taken into account. To reach this goal, a methodology based on the use of stochastic optimal control algorithms will be explored for robust trajectory planning at the pre-tactical level. At the tactical level, various tactics will be investigated to avoid storms by using a Monte-Carlo method.
At the sector scale, the main objective is to analyse the impact of the previously developed trajectory planning on sector demand. To achieve this objective, a methodology will be developed to measure the uncertainty of sector demand (probabilistic sector loading) based on the uncertainty of the individual trajectories. This analysis will also provide an understanding of how weather uncertainty propagates from the trajectory scale to the sector scale.
All the solutions proposed in this project will be evaluated and assessed using an advanced air traffic simulator.
This project is fully aligned with the call, where the following objectives are stated: “to enhance meteorological capabilities and their integration into ATM planning processes for improving ATM efficiency” and “to develop 4D trajectories that are optimised to take account of all environmental considerations”.
Report on evaluation and assessment of proposed solutions | Documents, reports | 2019-05-31 11:51:08 |
Catalogue of case studies for robust trajectory planning | Documents, reports | 2019-05-30 14:44:25 |
Effects of weather uncertainty in sector demand | Documents, reports | 2019-05-30 14:44:27 |
TRL-Assessment report | Other | 2019-05-30 14:44:25 |
Proceedings of TBO-Met workshop | Documents, reports | 2019-05-30 14:44:23 |
TBO-Met press release | Websites, patent fillings, videos etc. | 2019-05-30 14:44:20 |
Catalogue of case studies for sector demand analysis | Documents, reports | 2019-05-30 14:44:25 |
Project results final report | Other | 2019-02-26 16:05:29 |
Exploitation plan | Documents, reports | 2019-05-30 14:26:07 |
Survey questionnaire | Documents, reports | 2019-05-30 14:26:01 |
Requirements and concept for EPS processing | Documents, reports | 2019-05-30 14:25:58 |
Methodology to assess the uncertainty of sector demand | Documents, reports | 2019-05-30 14:25:58 |
Efficiency/ predictability trade-off of 4D trajectories at tactical level | Documents, reports | 2019-05-30 14:25:58 |
Communication plan | Documents, reports | 2019-05-30 14:26:10 |
Requirements and concept for nowcast processing | Documents, reports | 2019-05-30 14:25:57 |
Stakeholders’ survey report | Documents, reports | 2019-05-30 14:26:06 |
Data management plan | Documents, reports | 2019-05-30 14:26:09 |
Project management plan | Documents, reports | 2019-05-30 14:25:58 |
Efficiency/ predictability trade-off of 4D trajectories at pre-tactical level | Documents, reports | 2019-05-30 14:25:59 |
Dissemination plan | Documents, reports | 2019-05-30 14:26:01 |
Take a look to the deliverables list in detail: detailed list of TBO-MET deliverables.
year | authors and title | journal | last update |
---|---|---|---|
2017 |
Daniel González-Arribas, Daniel Hentzen, Manuel Sanjurjo, Manuel Soler, and Maryam Kamgarpour Optimal Aircraft Trajectory Planning in the Presence of Stochastic Convective Weather Cells published pages: , ISSN: , DOI: |
17th AIAA Aviation Technology, Integration, and Operations Conference 2017 | 2019-06-13 |
2017 |
Alfonso Valenzuela, Antonio Franco and Damián Rivas Sector demand analysis under meteorological uncertainty published pages: , ISSN: , DOI: 10.13009/EUCASS2017-263 |
7th European Conference for Aeronautics and Space Sciences 2017 | 2019-06-13 |
2017 |
Alfonso Valenzuela, Antonio Franco, Damián Rivas, Javier GarcÃa-Heras and Manuel Soler Effects of Reducing Wind-Induced Trajectory Uncertainty on Sector Demand published pages: , ISSN: , DOI: |
7th SESAR Innovation Days Conference 2017 | 2019-06-13 |
2017 |
Daniel González-Arribas, Manuel Soler, Manuel Sanjurjo-Rivo Robust Aircraft Trajectory Planning Under Wind Uncertainty Using Optimal Control published pages: 1-16, ISSN: 0731-5090, DOI: 10.2514/1.G002928 |
Journal of Guidance, Control, and Dynamics | 2019-06-13 |
2018 |
Alfonso Valenzuela, Antonio Franco, Damián Rivas, Daniel Sacher, Javier GarcÃa-Heras and Manuel Soler Effects of Weather Uncertainty in Sector Demand at Tactical Level published pages: , ISSN: , DOI: |
International Symposium on Sustainable Aviation 2018 | 2019-06-13 |
2017 |
Daniel González-Arribas, Manuel Soler, Manuel Sanjurjo-Rivo, Javier GarcÃa-Heras, Ulrike Gelhardt, Juergen Lang, Thomas Hauf, and Juan Simarro Robust Optimal Trajectory Planning under Uncertain Winds and Convective Risk published pages: , ISSN: , DOI: |
5th ENRI International Workshop on ATM/CNS 2017 | 2019-06-13 |
2016 |
Sanjurjo Rivo, Manuel; Soler Arnedo, Manuel Fernando; González Arribas, Daniel Wind-Based Robust Trajectory Optimization using Meteorological Ensemble Probabilistic Forecasts published pages: , ISSN: , DOI: |
6th SESAR Innovation Days Conference 2016 | 2019-06-13 |
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