Proceedings of 1994 33rd IEEE Conference on Decision and Control
DOI: 10.1109/cdc.1994.411036
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Mixed H/sub 2/ and H/sub ∞/ optimal control of smart structures

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Cited by 5 publications
(3 citation statements)
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“…The number of modes reserved is based on the control effect designer wants to get. 11 10 −9 10 −9 10 −9 10 −9 12 10 −9 10 −9 10 −9 10 −9 13 10 −9 10 −9 10 −9 10 −9 14 10 −9 10 −9 10 −9 10 −9 30…”
Section: Number Of Modes To Be Reservedmentioning
confidence: 99%
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“…The number of modes reserved is based on the control effect designer wants to get. 11 10 −9 10 −9 10 −9 10 −9 12 10 −9 10 −9 10 −9 10 −9 13 10 −9 10 −9 10 −9 10 −9 14 10 −9 10 −9 10 −9 10 −9 30…”
Section: Number Of Modes To Be Reservedmentioning
confidence: 99%
“…Considering both uncertainties due to control and observation spillover in the unmodeled residual modes and to parametric errors in the structural model, Lucian Iorga [13] used H infinity control with μ-analysis to control a piezoelectric actuated plate. Robert Lashlee [14] designed a mixed H 2 and H infinity optimal controller for smart structures when there exist natural frequency variations. Most literature handles the cases that there are parameter uncertainties caused by natural frequency variations or damping ratio variations and the cases considering unmodeled dynamics.…”
Section: Introductionmentioning
confidence: 99%
“…Several authors have considered natural frequency variations in the design of controllers for structures. Lashlee et al (1994) and Butler et al (1997) have used H 2 /H • formulations to design such controllers. It was seen that these methods resulted in highly conservative designs.…”
Section: Introductionmentioning
confidence: 99%