2017 · 10 citations · 5 references
EngineeringField RoboticsFlying RobotUnmanned VehicleUnmanned SystemSystems EngineeringUnmanned Aerial VehiclesAutonomous InfraredMachine VisionUav LocalizationGeographyAutonomous NavigationPrecise LandingComputer VisionAerial RoboticsAerospace EngineeringRemote SensingAerial VehiclesUnmanned Aerial SystemsAir Vehicle System
Precise landing of multirotor unmanned aerial vehicles (UAVs) in confined, GPS-denied and vision-compromised environments presents a challenge to common autopilot systems. In this work we outline an autonomous infrared (IR) landing system using a ground-based IR radiator, UAV-mounted IR camera, and image processing computer. Previous work has focused on UAV-mounted IR sources for UAV localization, or systems using multiple distributed ground-based IR sources to estimate UAV pose. We experimented with the use of a single ground-based IR radiator to determine the UAV's relative location in three-dimensional space. The outcome of our research significantly simplifies the landing zone setup by requiring only a single IR source, and increases operational flexibility, as the vision-based system adapts to changes in landing zone position. The usefulness of our system is especially demonstrated in vision-compromised applications such as nighttime operations, or in smoky environments observed during forest fires. We also evaluated a high-power IR radiator for future research in the field of outdoor autonomous point-to-point navigation between IR sources where GPS is unavailable.
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A survey of autonomous landing techniques for UAVs
Alvika Gautam, P. B. Sujit, Srikanth Saripalli · 2014 · 161 citations
Autonomous landing of an UAV with a ground-based actuated infrared stereo vision system
Weiwei Kong, Daibing Zhang, Xun Wang et al. · 2013 · 97 citations