IROS 2019poster23 citations

Contour based Reconstruction of Underwater Structures Using Sonar, Visual, Inertial, and Depth Sensor

Sharmin Rahman, Alberto Quattrini Li, Ioannis Rekleitis

Abstract

This paper presents a systematic approach on realtime reconstruction of an underwater environment using Sonar, Visual, Inertial, and Depth data. In particular, low lighting conditions, or even complete absence of natural light inside caves, results in strong lighting variations, e.g., the cone of the artificial video light intersecting underwater structures, and the shadow contours. The proposed method utilizes the well defined edges between well lit areas and darkness to provide additional features, resulting into a denser 3D point cloud than the usual point clouds from a visual odometry system. Experimental results in an underwater cave at Ginnie Springs, FL, with a custom-made underwater sensor suite demonstrate the performance of our system. This will enable more robust navigation of autonomous underwater vehicles using the denser 3D point cloud to detect obstacles and achieve higher resolution reconstructions.

BibTeX
@inproceedings{iros2019_contourbasedreco,
  title = {Contour based Reconstruction of Underwater Structures Using Sonar, Visual, Inertial, and Depth Sensor},
  author = {Sharmin Rahman and Alberto Quattrini Li and Ioannis Rekleitis},
  booktitle = {IROS 2019},
  year = {2019}
}
Contour based Reconstruction of Underwater Structures Using Sonar, Visual, Inertial, and Depth Sensor · IROS 2019