2021
DOI: 10.3389/frobt.2021.638849
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Autonomous Robots for Space: Trajectory Learning and Adaptation Using Imitation

Abstract: This paper adds on to the on-going efforts to provide more autonomy to space robots and introduces the concept of programming by demonstration or imitation learning for trajectory planning of manipulators on free-floating spacecraft. A redundant 7-DoF robotic arm is mounted on small spacecraft dedicated for debris removal, on-orbit servicing and assembly, autonomous and rendezvous docking. The motion of robot (or manipulator) arm induces reaction forces on the spacecraft and hence its attitude changes promptin… Show more

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Cited by 5 publications
(1 citation statement)
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“…Through a robotic arm, the satellite was able to grasp and send the object it collected back on a re-entry trajectory. Small-scale robotic systems, exemplified by the Future Space Debris Removal Orbital Manipulator (FSDROM), are poised to make a significant contribution to upcoming space debris removal missions, according to Shyam et al (2021) . As reported by the European Space Agency (ESA) in 2019, the amount of space debris in Earth’s orbit has exceeded 8,000 tons and continues to rise, posing a significant threat to both satellites and astronauts ( Chatterjee, 2014 ).…”
Section: Introductionmentioning
confidence: 99%
“…Through a robotic arm, the satellite was able to grasp and send the object it collected back on a re-entry trajectory. Small-scale robotic systems, exemplified by the Future Space Debris Removal Orbital Manipulator (FSDROM), are poised to make a significant contribution to upcoming space debris removal missions, according to Shyam et al (2021) . As reported by the European Space Agency (ESA) in 2019, the amount of space debris in Earth’s orbit has exceeded 8,000 tons and continues to rise, posing a significant threat to both satellites and astronauts ( Chatterjee, 2014 ).…”
Section: Introductionmentioning
confidence: 99%