DocumentCode
783615
Title
A Dynamic-Model-Based Wheel Slip Detector for Mobile Robots on Outdoor Terrain
Author
Ward, Chris C. ; Iagnemma, Karl
Author_Institution
ASML Lithography Syst., Inc., Wilton, CT
Volume
24
Issue
4
fYear
2008
Firstpage
821
Lastpage
831
Abstract
This paper introduces a model-based approach to estimating longitudinal wheel slip and detecting immobilized conditions of autonomous mobile robots operating on outdoor terrain. A novel tire traction/braking model is presented and used to calculate vehicle dynamic forces in an extended Kalman filter framework. Estimates of external forces and robot velocity are derived using measurements from wheel encoders, inertial measurement unit, and GPS. Weak constraints are used to constrain the evolution of the resistive force estimate based upon physical reasoning. Experimental results show the technique accurately and rapidly detects robot immobilization conditions while providing estimates of the robot´s velocity during normal driving. Immobilization detection is shown to be robust to uncertainty in tire model parameters. Accurate immobilization detection is demonstrated in the absence of GPS, indicating the algorithm is applicable for both terrestrial applications and space robotics.
Keywords
Global Positioning System; Kalman filters; braking; mobile robots; nonlinear filters; robot dynamics; traction; tyres; GPS; autonomous mobile robots; dynamic-model-based wheel slip detector; extended Kalman filter framework; immobilized condition detection; inertial measurement unit; outdoor terrain; robot velocity; tire braking model; tire traction model; vehicle dynamic forces; wheel encoders; Extended Kalman filter (EKF); mobile robots; robot–terrain interaction; robot--terrain interaction; wheel slip;
fLanguage
English
Journal_Title
Robotics, IEEE Transactions on
Publisher
ieee
ISSN
1552-3098
Type
jour
DOI
10.1109/TRO.2008.924945
Filename
4559359
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