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Structure assembly by a heterogeneous team of robots using state estimation, generalized joints, and mobile parallel manipulators

Erik Komendera, Shaurav Adhikari, Samantha Glassner, Ashwin Kishen, Amy Quartaro

发表年份
2017
引用次数
8

摘要

Autonomous robotic assembly by mobile field robots has seen significant advances in recent decades, yet practicality remains elusive. Identified challenges include better use of state estimation to and reasoning with uncertainty, spreading out tasks to specialized robots, and implementing representative joining methods. This paper proposes replacing 1) self-correcting mechanical linkages with generalized joints for improved applicability, 2) assembly serial manipulators with parallel manipulators for higher precision and stability, and 3) all-in-one robots with a heterogeneous team of specialized robots for agent simplicity. This paper then describes a general assembly algorithm utilizing state estimation. Finally, these concepts are tested in the context of solar array assembly, requiring a team of robots to assemble, bond, and deploy a set of solar panel mockups to a backbone truss to an accuracy not built into the parts. This paper presents the results of these tests.

关键词

RobotContext (archaeology)Computer scienceMobile robotState (computer science)Set (abstract data type)Field (mathematics)SimplicityDistributed computingTruss

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