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Title: Global asymptotic stabilisation of an active mass damper for a flexible beam (English)
Author: Menini, Laura
Author: Tornambè, Antonio
Author: Zaccarian, Luca
Language: English
Journal: Kybernetika
ISSN: 0023-5954
Volume: 35
Issue: 5
Year: 1999
Pages: [599]-612
Summary lang: English
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Category: math
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Summary: In this paper, a finite dimensional approximated model of a mechanical system constituted by a vertical heavy flexible beam with lumped masses placed along the beam and a mobile mass located at the tip, is proposed; such a model is parametric in the approximation order, so that a prescribed accuracy in the representation of the actual system can be easily obtained with the proposed model. The system itself can be understood as a simple representation of a building subject to transverse vibrations, whose vibrating modes are damped by a control action performed at the top by means of a mobile mass. A simple PD control law, which requires only the measurement of the position and velocity of the mobile mass with respect to the end-point of the beam, is shown to globally asymptotically stabilise all the flexible modes considered in the approximated model, regardless of the chosen approximation order, under a technical assumption that is satisfied in many cases of practical interest. Simulation runs confirm the effectiveness of the proposed control law in achieving both position regulation of the mobile mass and vibration control. (English)
Keyword: approximated model
Keyword: asymptotic stabilization
Keyword: vertical heavy flexible beam
Keyword: simple PD control law
Keyword: transverse vibrations
Keyword: mobile mass
Keyword: active mass damper
Keyword: lumped masses
Keyword: position regulation
Keyword: vibration control
MSC: 70Q05
MSC: 74K10
MSC: 74M05
MSC: 93D15
MSC: 93D20
idZBL: Zbl 1274.93234
idMR: MR1728470
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Date available: 2009-09-24T19:28:19Z
Last updated: 2015-03-27
Stable URL: http://hdl.handle.net/10338.dmlcz/135310
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