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Lunar Rover Optimization Platform for Wheel Traction StudiesRobotic mobility systems expand the reach of future scientific and exploration missions to celestial bodies. Understanding the traction performance of these systems is necessary knowledge that informs mission-level requirements, such as power budgets and navigation envelopes. This paper covers the design, development, and verification of the four wheeled Lunar Rover Optimization Platform (LROP). This mass optimized platform is targeted to emulate future medium class rovers weighing up to 90 kg. The LROP has the ability to conduct various wheel design experiments such as obstacle traversal, slope ascent, and drawbar pull over a wheel loading range of 4.5 to 22.7 kg. The platform also has the ability to shift its center of gravity (CG) laterally and longitudinally to explore the CG shift effects on mobility performance. This knowledge is valuable for future rover designers exploring different payload packaging solutions. In this paper results from obstacle traversal test with varying angle of attack (AOA) and longitudinal CG position are reported along with results from slope ascent testing which proved-out the LROPs capabilities.
Document ID
20200003006
Acquisition Source
Glenn Research Center
Document Type
Conference Paper
External Source(s)
Authors
Stephen Gerdts
(Glenn Research Center Cleveland, Ohio, United States)
John Breckenridge
(Glenn Research Center Cleveland, Ohio, United States)
Kyle Johnson
(Glenn Research Center Cleveland, Ohio, United States)
Date Acquired
April 24, 2020
Subject Category
Lunar And Planetary Science And Exploration
Report/Patent Number
GRC-E-DAA-TN75579
Report Number: GRC-E-DAA-TN75579
Meeting Information
Meeting: ASCE Earth and Space 2020
Location: Seattle, WA
Country: US
Start Date: April 21, 2020
End Date: April 23, 2020
Sponsors: American Society of Civil Engineers
Funding Number(s)
WBS: 993436.06.02.02.05
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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