Opportunities to monitor the urban atmospheric turbulence using unmanned aerial system
Author:
Publisher
SPIE
Reference8 articles.
1. Wind Estimation in the Lower Atmosphere Using Multirotor Aircraft
2. Real-time wind estimation on a micro unmanned aerial vehicle using its inertial measurement unit
3. Wind Profiling in the Lower Atmosphere from Wind-Induced Perturbations to Multirotor UAS
4. Measuring Atmospheric Winds from Quadrotor Motion
5. Wind estimation using quadcopter motion: A machine learning approach
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1. High-Resolution Profiling of Atmospheric Turbulence Using UAV Autopilot Data;Drones;2023-06-22
2. Estimation of the integral scales of atmospheric turbulence with UAV;27th International Symposium on Atmospheric and Ocean Optics, Atmospheric Physics;2021-12-16
3. Using Small Unmanned Aerial Vehicles for Turbulence Measurements in the Atmosphere;Izvestiya, Atmospheric and Oceanic Physics;2021-09
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