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A "Kane's Dynamics" Model for the Active Rack Isolation SystemMany microgravity space science experiments require vibratory acceleration levels unachievable without active isolation. The Boeing Corporation's Active Rack Isolation System (ARIS) employs a novel combination of magnetic actuation and mechanical linkages to address these isolation requirements on the International Space Station (ISS). ARIS provides isolation at the rack (International Standard Payload Rack (ISPR)) level. Effective model-based vibration isolation requires: (1) an appropriate isolation device, (2) an adequate dynamic (i.e., mathematical) model of that isolator, and (3) a suitable, corresponding controller. ARIS provides the ISS response to the first requirement. This paper presents one response to the second, in a state space framework intended to facilitate an optimal-controls approach to the third. The authors use "Kane's Dynamics" to develop a state-space, analytical (algebraic) set of linearized equations of motion for ARIS.
Document ID
20010067152
Acquisition Source
Marshall Space Flight Center
Document Type
Technical Memorandum (TM)
Authors
Hampton, R. D.
(Alabama Univ. Huntsville, AL United States)
Beech, G. S.
(NASA Marshall Space Flight Center Huntsville, AL United States)
Rao, N. N. S.
(Alabama Univ. Huntsville, AL United States)
Rupert, J. K.
(Alabama Univ. Huntsville, AL United States)
Kim, Y. K.
(NASA Marshall Space Flight Center Huntsville, AL United States)
Date Acquired
September 7, 2013
Publication Date
May 1, 2001
Subject Category
Communications And Radar
Report/Patent Number
NAS 1.15:211063
M-1019
NASA/TM-2001-211063
Report Number: NAS 1.15:211063
Report Number: M-1019
Report Number: NASA/TM-2001-211063
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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