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Free-floating dual-arm robots for space assemblyFreely moving systems in space conserve linear and angular momentum. As moving systems collide, the velocities get altered due to transfer of momentum. The development of strategies for assembly in a free-floating work environment requires a good understanding of primitives such as self motion of the robot, propulsion of the robot due to onboard thrusters, docking of the robot, retrieval of an object from a collection of objects, and release of an object in an object pool. The analytics of such assemblies involve not only kinematics and rigid body dynamics but also collision and impact dynamics of multibody systems. In an effort to understand such assemblies in zero gravity space environment, we are currently developing at Ohio University a free-floating assembly facility with a dual-arm planar robot equipped with thrusters, a free-floating material table, and a free-floating assembly table. The objective is to pick up workpieces from the material table and combine them into prespecified assemblies. This paper presents analytical models of assembly primitives and strategies for overall assembly. A computer simulation of an assembly is developed using the analytical models. The experiment facility will be used to verify the theoretical predictions.
Document ID
19940026041
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Agrawal, Sunil Kumar
(Ohio Univ. Athens, OH, United States)
Chen, M. Y.
(Ohio Univ. Athens, OH, United States)
Date Acquired
September 6, 2013
Publication Date
March 1, 1994
Publication Information
Publication: NASA. Johnson Space Center, Conference on Intelligent Robotics in Field, Factory, Service, and Space (CIRFFSS 1994), Volume 1
Subject Category
Cybernetics
Report/Patent Number
AIAA PAPER 94-1195-CP
Accession Number
94N30546
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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