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Concept verification of three dimensional free motion simulator for space robotIn the development of automatic assembling technologies for space structures, it is an indispensable matter to investigate and simulate the movements of robot satellites concerned with mission operation. The movement investigation and simulation on the ground will be effectively realized by a free motion simulator. Various types of ground systems for simulating free motion have been proposed and utilized. Some of these methods are a neutral buoyancy system, an air or magnetic suspension system, a passive suspension balance system, and a free flying aircraft or drop tower system. In addition, systems can be simulated by computers using an analytical model. Each free motion simulation method has limitations and well known problems, specifically, disturbance by water viscosity, limited number of degrees-of-freedom, complex dynamics induced by the attachment of the simulation system, short experiment time, and the lack of high speed super-computer simulation systems, respectively. The basic idea presented here is to realize 3-dimensional free motion. This is achieved by combining a spherical air bearing, a cylindrical air bearing, and a flat air bearing. A conventional air bearing system has difficulty realizing free vertical motion suspension. The idea of free vertical suspension is that a cylindrical air bearing and counter balance weight realize vertical free motion. This paper presents a design concept, configuration, and basic performance characteristics of an innovative free motion simulator. A prototype simulator verifies the feasibility of 3-dimensional free motion simulation.
Document ID
19950017282
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Okamoto, Osamu
(National Aerospace Lab. Tokyo, Japan)
Nakaya, Teruomi
(National Aerospace Lab. Tokyo, Japan)
Pokines, Brett
(Virginia Polytechnic Inst. and State Univ. Blacksburg, VA., United States)
Date Acquired
September 6, 2013
Publication Date
October 1, 1994
Publication Information
Publication: JPL, Third International Symposium on Artificial Intelligence, Robotics, and Automation for Space 1994
Subject Category
Ground Support Systems And Facilities (Space)
Accession Number
95N23702
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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