Accurate estimation of drawbar pull of wheeled mobile robots traversing sandy terrain using built-in force sensor array wheel
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[1] Steven Dubowsky,et al. On-line terrain parameter estimation for planetary rovers , 2002, Proceedings 2002 IEEE International Conference on Robotics and Automation (Cat. No.02CH37292).
[2] Kazuya Yoshida,et al. Terramechanics-based model for steering maneuver of planetary exploration rovers on loose soil: Research Articles , 2007 .
[3] Y. Nohse,et al. A measurement of basic mechanical quantities of off-the-road traveling performance , 1991 .
[4] Jo Yung Wong,et al. Theory of ground vehicles , 1978 .
[5] Steven Dubowsky,et al. Mobile Robots in Rough Terrain - Estimation, Motion Planning, and Control with Application to Planetary Rovers , 2004, Springer Tracts in Advanced Robotics.
[6] A. R. Reece,et al. Prediction of rigid wheel performance based on the analysis of soil-wheel stresses part I. Performance of driven rigid wheels , 1967 .
[7] Kazuya Yoshida,et al. Slope traversal controls for planetary exploration rover on sandy terrain , 2009, J. Field Robotics.
[8] Kazuya Yoshida,et al. Terramechanics‐based model for steering maneuver of planetary exploration rovers on loose soil , 2007, J. Field Robotics.
[9] M. G. Bekker,et al. Off-the-road locomotion , 1960 .
[10] A. R. Jumikis. Introduction to Terrain-Vehicle Systems , 1970 .
[11] Larry H. Matthies,et al. Two years of Visual Odometry on the Mars Exploration Rovers , 2007, J. Field Robotics.
[12] Larry Matthies,et al. Two years of Visual Odometry on the Mars Exploration Rovers: Field Reports , 2007 .
[13] Itzhak Shmulevich,et al. A new field single wheel tester , 1996 .