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Performance analysis and terrain classification for a legged robot over rough terrain

Fernando L. Garcia Bermudez, Ryan Julian, Duncan W. Haldane, Pieter Abbeel, Ronald S. Fearing

Year
2012
Citations
66

Abstract

Minimally actuated millirobotic crawlers navigate unreliably over uneven terrain-even when designed with inherent stability-mostly because of manufacturing variabilities and a lack of good models for ground interaction. In this paper, we investigate the performance of a legged robot as it traverses three distinct rough terrains: tile, carpet, and gravel. Furthermore, we present an accurate, robust, low-lag, and efficient algorithm for terrain classification that uses vibration data from the on-board inertial measurement unit and motor control data from back-EMF sensing and magnetic encoders.

Keywords

TerrainRobotComputer scienceTileInertial measurement unitArtificial intelligenceComputer visionEncoderRemote sensingSimulation

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