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Experimental Robust Control of Structural Acoustic Radiation
Author(s) -
D. E. Cox,
Gary P. Gibbs,
Robert L. Clark,
Jeffrey S. Vipperman
Publication year - 1999
Publication title -
journal of vibration and acoustics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.605
H-Index - 82
eISSN - 1528-8927
pISSN - 1048-9002
DOI - 10.1115/1.2893999
Subject(s) - robustness (evolution) , control theory (sociology) , actuator , robust control , bounding overwatch , computer science , control engineering , engineering , control system , control (management) , biochemistry , chemistry , artificial intelligence , electrical engineering , gene
This work addresses the design and application of robust controllers for structural acoustic control. Both simulation and experimental results are presented. H(infinity) and mu-synthesis design methods were used to design feedback controllers which minimize power radiated from a panel while avoiding instability due to unmodeled dynamics. Specifically, high order structural modes which couple strongly to the actuator-sensor path were poorly modeled. This model error was analytically bounded with an uncertainty model, which allowed controllers to be designed without artificial limits on control effort. It is found that robust control methods provide the control designer with physically meaningful parameters with which to tune control designs and can be very useful in determining limits of performance. Experimental results also showed, however, poor robustness properties for control designs with ad-hoc uncertainty models. The importance of quantifying and bounding model errors is discussed.

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