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Terrain characterization and classification with a mobile robot

Lauro Ojeda, J. Borenstein, Gary Witus, Robert E. Karlsen

Year
2006
Citations
182
Access
Open access

Abstract

Abstract This paper introduces novel methods for terrain classification and characterization with a mobile robot. In the context of this paper, terrain classification aims at associating terrains with one of a few predefined, commonly known categories, such as gravel, sand, or asphalt. Terrain characterization , on the other hand, aims at determining key parameters of the terrain that affect its ability to support vehicular traffic. Such properties are collectively called “trafficability.” The proposed terrain classification and characterization system comprises a skid‐steer mobile robot, as well as some common and some uncommon but optional onboard sensors. Using these components, our system can characterize and classify terrain in real time and during the robot's actual mission. The paper presents experimental results for both the terrain classification and characterization methods. The methods proposed in this paper can likely also be implemented on tracked robots, although we did not test this option in our work.

Keywords

TerrainMobile robotRobotContext (archaeology)Computer scienceArtificial intelligenceCharacterization (materials science)Computer visionSimulationReal-time computing

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