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A distributed system adaptive control strategyOne attitude control device being studied for large spacecraft consists of two counter-rotating rings, each designated as an annular momentum control device (AMCD), that are attached to a spacecraft using several magnetic bearings distributed along the circumference of the rings. For large spacecraft large rings are desirable. Unfortunately, for large rings flexibility is appreciable and it becomes necessary to account for the distributed nature of the rings in the design of the magnetic bearing controllers. Also ring behavior is unpredictably sensitive to ring temperature, spin rate, manufacturing imperfections, and other variables. For that reason a distributed adaptive microcomputer-based control system is being sought for ring stabilization and maneuvering. An original adaptive-control methodology for distributed-parameter systems is detailed and application to spinning ring, i.e., AMCD, stabilization is used as an illustration. The proposed methodology, presented as a step-by-step procedure, combines a lumped-parameter expansion description of distributed parameter systems with a fundamental simultaneous identification and control strategy. Simulations are presented providing preliminary evidence of the capabilities of the proposed procedure.
Document ID
19800030772
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Johnson, C. R., Jr.
(Virginia Polytechnic Institute and State University Blacksburg, Va., United States)
Montgomery, R. C.
(NASA Langley Research Center Flight Dynamics and Control Div., Hampton, Va., United States)
Date Acquired
August 10, 2013
Publication Date
September 1, 1979
Publication Information
Publication: IEEE Transactions on Aerospace and Electronic Systems
Volume: AES-15
Subject Category
Cybernetics
Accession Number
80A14942
Funding Number(s)
CONTRACT_GRANT: NSG-1527
Distribution Limits
Public
Copyright
Other

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