IROS 2015poster24 citations

Scene understanding for a high-mobility walking robot

David M. Bradley, Jonathan K. Chang, David Silver, Matthew Powers, Herman Herman, Peter Rander, Anthony Stentz

Abstract

High-mobility walking robots offer unique capabilities in complex off-road environments where wheeled vehicles are not able to travel. However, these environments can also pose significant autonomous navigation challenges. Key steps in planning a safe path for the robot autonomously include estimating the height of the support ground surface - which is often occluded by vegetation - and classifying the terrain and obstacles above the ground surface. This paper describes the development and experimental evaluation of a terrain classification and ground surface height estimation system to support autonomous navigation for a high-mobility walking robot. We provide experimental evaluation on an extensive, manually-labeled dataset collected from geographically diverse sites over a 28-month period.

BibTeX
@inproceedings{iros2015_sceneunderstandi,
  title = {Scene understanding for a high-mobility walking robot},
  author = {David M. Bradley and Jonathan K. Chang and David Silver and Matthew Powers and Herman Herman and Peter Rander and Anthony Stentz},
  booktitle = {IROS 2015},
  year = {2015}
}
Scene understanding for a high-mobility walking robot · IROS 2015