SUPERball: Exploring Tensegrities for Planetary Probes
Jonathan Bruce, Andrew P. Sabelhaus, Yangxin Chen, Dizhou Lu, K. J. Morse, Sophie Milam, Ken Caluwaerts, Alice M. Agogino, Vytas SunSpiral
- Year
- 2014
- Citations
- 42
Abstract
The Dynamic Tensegrity Robotics Lab (DTRL) at NASA Ames Research Center is developing a compliant and distributed tensegrity robotic platform for planetary exploration. Working in collaboration with Ghent University, the DTRL built an untethered prototype robot, the SUPERball. In this work, multiple issues with the current SUPERball design are addressed, when considering an example mission to Titan. Specifically, engineering requirements for the mission are empirically validated, and the current design is extended under these requirements to meet expanded goals. Survival of impact forces under entry, descent, and landing are verified with a physical experiment performed in collaboration with the University of Idaho. Then, concepts for a fully-actuated redesign of SUPERball are generated, compared, and validated against current engineering requirements. This exploratory work moves the SUPERball project toward an eventual flight-ready design.
Keywords
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