首页 /研究 /Continuous on-board monocular-vision-based elevation mapping applied to autonomous landing of micro aerial vehicles
OTHER

Continuous on-board monocular-vision-based elevation mapping applied to autonomous landing of micro aerial vehicles

Christian Förster, Matthias Faessler, Flavio Fontana, Manuel Werlberger, Davide Scaramuzza

发表年份
2015
引用次数
100

摘要

In this paper, we propose a resource-efficient system for real-time 3D terrain reconstruction and landing-spot detection for micro aerial vehicles. The system runs on an on-board smartphone processor and requires only the input of a single downlooking camera and an inertial measurement unit. We generate a two-dimensional elevation map that is probabilistic, of fixed size, and robot-centric, thus, always covering the area immediately underneath the robot. The elevation map is continuously updated at a rate of 1 Hz with depth maps that are triangulated from multiple views using recursive Bayesian estimation. To highlight the usefulness of the proposed mapping framework for autonomous navigation of micro aerial vehicles, we successfully demonstrate fully autonomous landing including landing-spot detection in real-world experiments.

关键词

Elevation (ballistics)Artificial intelligenceComputer visionComputer scienceTerrainMonocularInertial measurement unitInertial navigation systemRobotOrientation (vector space)

相关论文

查看 OTHER 分类全部论文