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Decentralized static output‐feedback H∞ controller design for buildings under seismic excitation
In this work, we present a new method in designing static output‐feedback H∞ controllers suitable for vibrational control of buildings under seismic excitation. The method produces a Linear Matrix Inequality (LMI) formulation that allows obtaining static output‐feedback controllers with different information structure constraints by imposing a convenient zero–nonzero structure on the LMI variables. The application of the proposed methodology is illustrated by designing centralized and decentralized velocity‐feedback H∞ controllers to mitigate the seismic response of a five‐story building. Copyright © 2011 John Wiley & Sons, Ltd.
Decentralized static output‐feedback H∞ controller design for buildings under seismic excitation
In this work, we present a new method in designing static output‐feedback H∞ controllers suitable for vibrational control of buildings under seismic excitation. The method produces a Linear Matrix Inequality (LMI) formulation that allows obtaining static output‐feedback controllers with different information structure constraints by imposing a convenient zero–nonzero structure on the LMI variables. The application of the proposed methodology is illustrated by designing centralized and decentralized velocity‐feedback H∞ controllers to mitigate the seismic response of a five‐story building. Copyright © 2011 John Wiley & Sons, Ltd.
Decentralized static output‐feedback H∞ controller design for buildings under seismic excitation
Rubió‐Massegú, J. (author) / Palacios‐Quiñonero, F. (author) / Rossell, J. M. (author)
Earthquake Engineering & Structural Dynamics ; 41 ; 1199-1205
2012-06-01
7 pages
Article (Journal)
Electronic Resource
English
Decentralized static output‐feedback H∞ controller design for buildings under seismic excitation
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