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A Study of Fixed-Order Mixed Norm Designs for a Benchmark Problem in Structural ControlThis study investigates the use of H2, p-synthesis, and mixed H2/mu methods to construct full-order controllers and optimized controllers of fixed dimensions. The benchmark problem definition is first extended to include uncertainty within the controller bandwidth in the form of parametric uncertainty representative of uncertainty in the natural frequencies of the design model. The sensitivity of H2 design to unmodelled dynamics and parametric uncertainty is evaluated for a range of controller levels of authority. Next, mu-synthesis methods are applied to design full-order compensators that are robust to both unmodelled dynamics and to parametric uncertainty. Finally, a set of mixed H2/mu compensators are designed which are optimized for a fixed compensator dimension. These mixed norm designs recover the H, design performance levels while providing the same levels of robust stability as the u designs. It is shown that designing with the mixed norm approach permits higher levels of controller authority for which the H, designs are destabilizing. The benchmark problem is that of an active tendon system. The controller designs are all based on the use of acceleration feedback.
Document ID
19990019891
Acquisition Source
Marshall Space Flight Center
Document Type
Reprint (Version printed in journal)
Authors
Whorton, Mark S.
(NASA Marshall Space Flight Center Huntsville, AL United States)
Calise, Anthony J.
(NASA Marshall Space Flight Center Huntsville, AL United States)
Hsu, C. C.
(NASA Marshall Space Flight Center Huntsville, AL United States)
Date Acquired
August 19, 2013
Publication Date
January 1, 1998
Publication Information
Publication: Earthquake Engineering and Structural Dynamics
Publisher: John Wiley and Sons, Ltd.
Volume: 27
ISSN: 0098-8847
Subject Category
Geophysics
Distribution Limits
Public
Copyright
Other

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