LINA's testing infrastructure enables AI to take-off in unmanned aerial vehicles (UAVs). [PDF]
Bolck HA +13 more
europepmc +1 more source
Editorial: Innovative applications of hyperspectral imaging technology in horticultural plants. [PDF]
Lan W, Wu L, Liu H, García Martín JF.
europepmc +1 more source
Water Plume Temperature Measurements by an Unmanned Aerial System (UAS) [PDF]
Azer Yalin, Azer P Yalin
exaly +2 more sources
Related searches:
System Analysis of Counter-Unmanned Aerial Systems Kill Chain in an Operational Environment
Systems, 2021Douglas van Bossuyt +2 more
exaly
Survey on Unmanned Aerial Vehicle Networks: A Cyber Physical System Perspective
IEEE Communications Surveys and Tutorials, 2020Dongtang Ma, Jiaxun Li, Haitao Zhao
exaly
Review on Type of Sensors and Detection Method of Anti-Collision System of Unmanned Aerial Vehicle
Sensors, 2023Andriy Holovatyy +2 more
exaly
The AgriQ: A low-cost unmanned aerial system for precision agriculture
Expert Systems With Applications, 2021Andres Montes de Oca, Gerardo Flores
exaly
Review of Propulsion System Design Strategies for Unmanned Aerial Vehicles
Applied Sciences (Switzerland), 2021Simone Zanoni +2 more
exaly
Measurement of SO2 and NO2 in Ship Plumes Using Rotary Unmanned Aerial System
Atmosphere, 2019exaly

