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Soil Displacement Terramechanics for Wheel-Based Trenching with a Planetary RoverPlanetary exploration rovers are expensive, weight constrained, and cannot be serviced once deployed. Here, we explore one way to increase their capabilities while avoiding the cost, mass, and complexity leading to these issues. We propose to re-use the large wheel actuators for trenching and other digging operations, which will enable a range of missions such as sampling deeper layers of soil. We present a new, closed-form model of the soil displaced by an angled, spinning wheel to analyze the trenching potential of a driving strategy and inform the control of the wheel. The model is demonstrated with single wheel experiments under different driving conditions. The model suggests: that a deep trench does not require large tractive efforts; that the shape of the trench can be controlled; and that a rear wheel has a lower risk of entrapment when trenching than a front wheel. Ultimately this model could be used in a nonprehensile manipulation planning or learning algorithm to enable autonomous trenching.
Document ID
20230000878
Acquisition Source
2230 Support
Document Type
Conference Paper
Authors
Catherine A Pavlov
(Carnegie Mellon University Pittsburgh, Pennsylvania, United States)
Aaron M Johnson
(Carnegie Mellon University Pittsburgh, Pennsylvania, United States)
Date Acquired
January 19, 2023
Publication Date
August 12, 2019
Publication Information
Publication: 2019 International Conference on Robotics and Automation (ICRA)
Publisher: Institute of Electrical and Electronics Engineers
Subject Category
Cybernetics, Artificial Intelligence and Robotics
Report/Patent Number
NIHMS1043767
Meeting Information
Meeting: IEEE International Conference on Robotics and Automation (ICRA)
Location: Montreal, QC
Country: CA
Start Date: May 20, 2019
End Date: May 24, 2019
Sponsors: Institute of Electrical and Electronics Engineers
Funding Number(s)
CONTRACT_GRANT: 80NSSC18K1154
CONTRACT_GRANT: NNX16CA42P
Distribution Limits
Public
Copyright
Use by or on behalf of the US Gov. Permitted.
Technical Review
Professional Review
Keywords
Wheels
Soil
Geometry
Deformable models
Mathematical model
Predictive models
Finite element analysis
Aerospace robotics
Mobile robots
Planetary rovers

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