Design of Distributed Multi-Actuator Systems with Incomplete State Information for Vibration Control of Large Structures
In this paper, we investigate the design and performance of static feedback controllers with partial-state information for the seismic protection of tall buildings equipped with incomplete multi-actuation systems. The proposed approach considers a partially instrumented multi-story building with an...
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| Published in: | Designs Vol. 2; no. 1; p. 6 |
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| Abstract | In this paper, we investigate the design and performance of static feedback controllers with partial-state information for the seismic protection of tall buildings equipped with incomplete multi-actuation systems. The proposed approach considers a partially instrumented multi-story building with an incomplete system of interstory force–actuation devices implemented on selected levels of the building, and an associated set of collocated sensors that measure the corresponding interstory drifts and interstory velocities. The main elements of the proposed controller design methodology are presented by means of a twenty-story building equipped with a system of ten interstory actuators arranged in three different layouts: concentrated, semi-distributed and fully-distributed. For these control configurations, partial-state controllers are designed following a static output-feedback H-infinity controller design approach, and the corresponding frequency and time responses are investigated. The obtained results clearly indicate that the proposed partial-state controllers are effective in mitigating the building seismic response. They also show that a suitable distribution of the instrumented stories is a relevant factor in the control system performance. |
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| AbstractList | In this paper, we investigate the design and performance of static feedback controllers with partial-state information for the seismic protection of tall buildings equipped with incomplete multi-actuation systems. The proposed approach considers a partially instrumented multi-story building with an incomplete system of interstory force–actuation devices implemented on selected levels of the building, and an associated set of collocated sensors that measure the corresponding interstory drifts and interstory velocities. The main elements of the proposed controller design methodology are presented by means of a twenty-story building equipped with a system of ten interstory actuators arranged in three different layouts: concentrated, semi-distributed and fully-distributed. For these control configurations, partial-state controllers are designed following a static output-feedback H-infinity controller design approach, and the corresponding frequency and time responses are investigated. The obtained results clearly indicate that the proposed partial-state controllers are effective in mitigating the building seismic response. They also show that a suitable distribution of the instrumented stories is a relevant factor in the control system performance.
Peer Reviewed In this paper, we investigate the design and performance of static feedback controllers with partial-state information for the seismic protection of tall buildings equipped with incomplete multi-actuation systems. The proposed approach considers a partially instrumented multi-story building with an incomplete system of interstory force–actuation devices implemented on selected levels of the building, and an associated set of collocated sensors that measure the corresponding interstory drifts and interstory velocities. The main elements of the proposed controller design methodology are presented by means of a twenty-story building equipped with a system of ten interstory actuators arranged in three different layouts: concentrated, semi-distributed and fully-distributed. For these control configurations, partial-state controllers are designed following a static output-feedback H-infinity controller design approach, and the corresponding frequency and time responses are investigated. The obtained results clearly indicate that the proposed partial-state controllers are effective in mitigating the building seismic response. They also show that a suitable distribution of the instrumented stories is a relevant factor in the control system performance. |
| Author | Rodellar, José Rossell, Josep Palacios-Quiñonero, Francisco Rubió-Massegú, Josep |
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| CitedBy_id | crossref_primary_10_3390_buildings9110231 crossref_primary_10_1177_1077546320939836 |
| Cites_doi | 10.1016/j.arcontrol.2013.09.012 10.1016/j.proeng.2017.09.087 10.1016/j.hbrcj.2015.04.004 10.1111/mice.12225 10.1002/stc.1529 10.1061/(ASCE)0733-9445(1996)122:12(1394) 10.1002/stc.344 10.1155/2010/936081 10.1002/tal.1268 10.1016/j.jfranklin.2016.11.016 10.1016/j.jfranklin.2013.08.011 10.1002/eqe.2379 10.1016/j.mechatronics.2013.01.012 10.1016/j.automatica.2012.10.012 10.1137/1.9781611970777 10.1061/(ASCE)0733-9445(2003)129:7(845) 10.1002/eqe.1167 10.1016/j.mechatronics.2009.11.001 10.1016/j.mechatronics.2013.07.013 10.1007/s00158-013-0892-y 10.1016/j.engstruct.2013.08.031 10.4173/mic.2011.2.2 10.1002/stc.468 10.1016/j.soildyn.2016.07.005 10.1002/stc.1652 10.1002/stc.1670 10.4173/mic.2012.3.1 10.1049/iet-cta.2015.0737 10.1016/j.jsv.2017.08.017 10.1002/eqe.862 |
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| DOI | 10.3390/designs2010006 |
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| SubjectTerms | 93 Systems Theory; Control Actuation Actuators Applied mathematics Aseismic buildings Automàtica i control Buildings Classificació AMS Control algorithms Control d'estructures (Enginyeria) Control systems design Control theory Controllers Design Distributed sensors Earthquakes Edificis Enginyeria civil Feedback control Information constraints Informàtica Large-scale structures Materials i estructures Multi-actuator systems Multistory buildings Output feedback Seismic design Seismic engineering Seismic response Sensors Sistemes de control per retroacció Static output-feedback Static output-feedback control Structural control (Engineering) Structural vibration control Tall buildings Vibració Vibration Vibration control Àrees temàtiques de la UPC |
| Title | Design of Distributed Multi-Actuator Systems with Incomplete State Information for Vibration Control of Large Structures |
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