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    Modelling, Identification, and Passivity-Based Robust Control of Piezo-actuated Flexible Beam

    Source: Journal of Vibration and Acoustics:;2004:;volume( 126 ):;issue: 002::page 260
    Author:
    S. V. Gosavi
    ,
    A. G. Kelkar
    DOI: 10.1115/1.1687392
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: This paper presents modelling, system identification, simulation, and experimental results for passivity-based robust control of piezo-actuated flexible beam. The flexible beam configuration considered is a cantilever aluminum beam with a piezoelectric transducer used as the actuator and tip-accelerometer as the sensor. The actuator and sensor are non-collocated. The Lagrangian formulation is used to obtain mathematical model of the flexible link dynamics with piezo actuator. For control design purposes, a finite dimensional approximate model is derived using assumed modes approach. It is shown that the approximate model compares very well with the experimentally identified model. Since the system is inherently not passive, passification techniques are used to render the system robustly passive which enables the use of passivity-based feedback control design. The controller design is validated both in simulation as well as in experiments. The simulation and experimental results demonstrate the effectiveness of controller in suppressing the tip vibrations of the link. The controller design is shown to be robust to both parametric uncertainties and unmodeled dynamics.
    keyword(s): Dynamics (Mechanics) , Sensors , Control equipment , Actuators , Design , Modeling , Robust control , Vibration , Feedback AND Piezoelectric actuators ,
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      Modelling, Identification, and Passivity-Based Robust Control of Piezo-actuated Flexible Beam

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    http://yetl.yabesh.ir/yetl1/handle/yetl/131074
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    contributor authorS. V. Gosavi
    contributor authorA. G. Kelkar
    date accessioned2017-05-09T00:14:48Z
    date available2017-05-09T00:14:48Z
    date copyrightApril, 2004
    date issued2004
    identifier issn1048-9002
    identifier otherJVACEK-28869#260_1.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/131074
    description abstractThis paper presents modelling, system identification, simulation, and experimental results for passivity-based robust control of piezo-actuated flexible beam. The flexible beam configuration considered is a cantilever aluminum beam with a piezoelectric transducer used as the actuator and tip-accelerometer as the sensor. The actuator and sensor are non-collocated. The Lagrangian formulation is used to obtain mathematical model of the flexible link dynamics with piezo actuator. For control design purposes, a finite dimensional approximate model is derived using assumed modes approach. It is shown that the approximate model compares very well with the experimentally identified model. Since the system is inherently not passive, passification techniques are used to render the system robustly passive which enables the use of passivity-based feedback control design. The controller design is validated both in simulation as well as in experiments. The simulation and experimental results demonstrate the effectiveness of controller in suppressing the tip vibrations of the link. The controller design is shown to be robust to both parametric uncertainties and unmodeled dynamics.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleModelling, Identification, and Passivity-Based Robust Control of Piezo-actuated Flexible Beam
    typeJournal Paper
    journal volume126
    journal issue2
    journal titleJournal of Vibration and Acoustics
    identifier doi10.1115/1.1687392
    journal fristpage260
    journal lastpage271
    identifier eissn1528-8927
    keywordsDynamics (Mechanics)
    keywordsSensors
    keywordsControl equipment
    keywordsActuators
    keywordsDesign
    keywordsModeling
    keywordsRobust control
    keywordsVibration
    keywordsFeedback AND Piezoelectric actuators
    treeJournal of Vibration and Acoustics:;2004:;volume( 126 ):;issue: 002
    contenttypeFulltext
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