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Adaptive Control for Microgravity Vibration Isolation SystemMost active vibration isolation systems that try to a provide quiescent acceleration environment for space science experiments have utilized linear design methods. In this paper, we address adaptive control augmentation of an existing classical controller that employs a high-gain acceleration feedback together with a low-gain position feedback to center the isolated platform. The control design feature includes parametric and dynamic uncertainties because the hardware of the isolation system is built as a payload-level isolator, and the acceleration Sensor exhibits a significant bias. A neural network is incorporated to adaptively compensate for the system uncertainties, and a high-pass filter is introduced to mitigate the effect of the measurement bias. Simulations show that the adaptive control improves the performance of the existing acceleration controller and keep the level of the isolated platform deviation to that of the existing control system.
Document ID
20050215582
Acquisition Source
Marshall Space Flight Center
Document Type
Preprint (Draft being sent to journal)
Authors
Yang, Bong-Jun
(Georgia Inst. of Tech. Atlanta, GA, United States)
Calise, Anthony J.
(Georgia Inst. of Tech. Atlanta, GA, United States)
Craig, James I.
(Georgia Inst. of Tech. Atlanta, GA, United States)
Whorton, Mark S.
(NASA Marshall Space Flight Center Huntsville, AL, United States)
Date Acquired
September 7, 2013
Publication Date
January 1, 2005
Subject Category
Space Sciences (General)
Meeting Information
Meeting: 2005 AIAA Guidance, Navigation, and Control Conference
Location: San Francisco, CA
Country: United States
Start Date: August 15, 2005
End Date: August 18, 2005
Sponsors: American Inst. of Aeronautics and Astronautics
Funding Number(s)
CONTRACT_GRANT: NAG8-1912
Distribution Limits
Public
Copyright
Public Use Permitted.
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