ICRA 2016226 citations

Direct visual-inertial odometry with stereo cameras

Vladyslav Usenko, Jakob J. Engel, Jörg Stückler, Daniel Cremers

Abstract

We propose a novel direct visual-inertial odometry method for stereo cameras. Camera pose, velocity and IMU biases are simultaneously estimated by minimizing a combined photometric and inertial energy functional. This allows us to exploit the complementary nature of vision and inertial data. At the same time, and in contrast to all existing visual-inertial methods, our approach is fully direct: geometry is estimated in the form of semi-dense depth maps instead of manually designed sparse keypoints. Depth information is obtained both from static stereo - relating the fixed-baseline images of the stereo camera - and temporal stereo - relating images from the same camera, taken at different points in time. We show that our method outperforms not only vision-only or loosely coupled approaches, but also can achieve more accurate results than state-of-the-art keypoint-based methods on different datasets, including rapid motion and significant illumination changes. In addition, our method provides high-fidelity semi-dense, metric reconstructions of the environment, and runs in real-time on a CPU.

BibTeX
@inproceedings{icra2016_directvisualiner,
  title = {Direct visual-inertial odometry with stereo cameras},
  author = {Vladyslav Usenko and Jakob J. Engel and Jörg Stückler and Daniel Cremers},
  booktitle = {ICRA 2016},
  year = {2016}
}
Direct visual-inertial odometry with stereo cameras · ICRA 2016