1. Field Experiments in Robotic Subsurface Science with Long Duration Autonomy
- Author
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David Kohanbash, Srinivasan Vijayarangan, David Wettergreen, Greydon T. Foil, Nathalie A. Cabrol, and Kris Zacny
- Subjects
Scientific instrument ,Engineering ,010504 meteorology & atmospheric sciences ,Drill ,business.industry ,Sample (statistics) ,Mars Exploration Program ,Autonomous robot ,01 natural sciences ,Field (computer science) ,Mars rover ,0103 physical sciences ,Systems engineering ,Robot ,business ,010303 astronomy & astrophysics ,Simulation ,0105 earth and related environmental sciences - Abstract
A next challenge in planetary exploration involves probing the subsurface to understand composition, to search for volatiles like water ice, or to seek evidence of life. The Mars rover missions have scraped the surface of Mars and cored rocks to make ground breaking discoveries. Many believe that the chance of finding evidence of life is expected to increase by going deeper. Deploying a system that probes the subsurface brings its own challenges and to that end, we designed, built and field tested an autonomous robot that can collect subsurface samples using a 1 m drill. The drill operation, sample transfer, and sample analysis are all automated. The robot also navigates kilometers autonomously while making decisions about scientific measurements. The system is designed to execute multi-day science plans, stopping and resuming operation as necessary. This paper describes the robot and science instruments and lessons from designing and operating such a system.
- Published
- 2017
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