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Autorinnen/Autoren:
Gioia, Daniele Giovanni; Bonari, Jacopo; Lichte, Daniel; Popp, Alexander
Dokumenttyp:
Konferenzbeitrag / Conference Paper
Titel:
Sequential Drone Routing for Data Assimilation on a 2D Airborne Contaminant Dispersion Problem
Titel Konferenzpublikation:
2024 Sensor Data Fusion: Trends, Solutions, Applications (SDF)
Konferenztitel:
Sensor Data Fusion: Trends, Solutions, Applications (16., 2024, Bonn)
Tagungsort:
Bonn, Germany
Jahr der Konferenz:
2024
Datum Beginn der Konferenz:
25.11.2024
Datum Ende der Konferenz:
27.11.2024
Verlagsort:
Piscataway, NJ
Verlag:
IEEE
Jahr:
2024
Seitenbereich:
1-8
Sprache:
Englisch
Stichwörter:
Atmospheric modeling ; Routing ; Data models ; Real-time systems ; Kalman filters ; Synchronization ; Reliability ; Dispersion ; Data assimilation ; Drones ; contaminant dispersion ; data assimilation ; dynamic routing ; sequential decisions
Abstract:
The combined use of data from different sources can be critical in emergencies, where accurate models are needed to make real-time decisions, but high-fidelity representations and detailed information are simply unavailable. This study presents a data assimilation framework based on an ensemble Kalman filter that sequentially exploits and improves an advection-diffusion model in a case study concerning an airborne contaminant dispersion problem over a complex two-dimensional domain. An autonomou...     »
ISBN:
979-8-3315-2744-0
DOI:
10.1109/SDF63218.2024.10773899
URL zum Inhalt:
https://doi.org/10.1109/SDF63218.2024.10773899
Fakultät:
Fakultät für Bauingenieurwesen und Umweltwissenschaften
Institut:
BAU 1 - Institut für Mathematik und Computergestützte Simulation
Professorin/Professor:
Popp, Alexander
Open Access:
Nein / No
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