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  5. Gain-scheduled H∞ buckling control of a circular beam-column subject to time-varying axial loads
 
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2018
Zweitveröffentlichung
Artikel
Postprint

Gain-scheduled H∞ buckling control of a circular beam-column subject to time-varying axial loads

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Hauptpublikation
Schaeffner, Platz 2018 - Gain-scheduled Η sub ∞ sub buckling control_Accepted Manuscript.pdf
CC BY-NC-ND 4.0 International
Format: Adobe PDF
Size: 2.32 MB
TUDa URI
tuda/6888
URN
urn:nbn:de:tuda-tuprints-177512
DOI
10.26083/tuprints-00017751
Autor:innen
Schaeffner, Maximilian ORCID 0000-0002-0957-7725
Platz, Roland
Kurzbeschreibung (Abstract)

For slender beam-columns loaded by axial compressive forces, active buckling control provides a possibility to increase the maximum bearable axial load above that of a purely passive structure. In this paper, an approach for gain-scheduled H∞ buckling control of a slender beam-column with circular cross-section subject to time-varying axial loads is investigated experimentally. Piezo-elastic supports with integrated piezoelectric stack actuators at the beam-column ends allow an active stabilization in arbitrary lateral directions. The axial loads on the beam-column influence its lateral dynamic behavior and, eventually, cause the beam-column to buckle. A reduced modal model of the beam-column subject to axial loads including the dynamics of the electrical components is set up and calibrated with experimental data. Particularly, the linear parameter-varying open-loop plant is used to design a model-based gain-scheduled H∞ buckling control that is implemented in an experimental test setup. The beam-column is loaded by ramp- and step-shaped time-varying axial compressive loads that result in a lateral deformation of the beam-column due to imperfections, such as predeformation, eccentric loading or clamping moments. The lateral deformations and the maximum bearable loads of the beam-column are analyzed and compared for the beam-column with and without gain-scheduled H∞ buckling control or, respectively, active and passive configuration. With the proposed gain-scheduled H∞ buckling control it is possible to increase the maximum bearable load of the active beam-column by 19% for ramp-shaped axial loads and to significantly reduce the beam-column deformations for step-shaped axial loads compared to the passive structure.

Sprache
Englisch
Fachbereich/-gebiet
16 Fachbereich Maschinenbau > Fachgebiet Systemzuverlässigkeit, Adaptronik und Maschinenakustik (SAM)
DDC
600 Technik, Medizin, angewandte Wissenschaften > 600 Technik
600 Technik, Medizin, angewandte Wissenschaften > 620 Ingenieurwissenschaften und Maschinenbau
Institution
Universitäts- und Landesbibliothek Darmstadt
Ort
Darmstadt
Titel der Zeitschrift / Schriftenreihe
Smart Materials and Structures
Jahrgang der Zeitschrift
27
Heftnummer der Zeitschrift
6
ISSN
1361-665X
Verlag
IOP
Publikationsjahr der Erstveröffentlichung
2018
Verlags-DOI
10.1088/1361-665X/aab63a
PPN
478533438
Zusätzliche Infomationen
Accepted Manuscript

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