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Optimal microgravity vibration isolation - An algebraic introductionCertain experiments contemplated for space platforms must be isolated from the accelerations of the platforms. An optimal active control is developed for microgravity vibration isolation, using constant state feedback gains (identical to those obtained from the Linear Quadratic Regulator (LQR) approach) along with constant feedforward (preview) gains. The quadratic cost function for this control algorithm effectively weights external accelerations of the platform disturbances by a factor proportional to (1/omega) (exp 4). Low frequency accelerations (less than 50 Hz) are attenuated by greater than two orders of magnitude. The control relies on the absolute position and velocity feedback of the experiment and the absolute position and velocity feedforward of the platform, and generally derives the stability robustness characteristics quaranteed by the LQR approach to optimality. The method as derived is extendable to the case in which only the relative positions and velocities and the absolute accelerations of the experiment and space platform are available.
Document ID
19920064871
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Hampton, R. D.
(Virginia, University Charlottesville, United States)
Grodsinsky, C. M.
(NASA Lewis Research Center Cleveland, OH, United States)
Allaire, P. E.
(NASA Lewis Research Center Cleveland, OH, United States)
Lewis, D. W.
(NASA Lewis Research Center Cleveland, OH, United States)
Knospe, C. R.
(Virginia, University Charlottesville, United States)
Date Acquired
August 15, 2013
Publication Date
June 1, 1992
Publication Information
Publication: Journal of the Astronautical Sciences
Volume: 40
Issue: 2, Ap
ISSN: 0021-9142
Subject Category
Spacecraft Design, Testing And Performance
Report/Patent Number
ISSN: 0021-9142
Accession Number
92A47495
Distribution Limits
Public
Copyright
Other

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