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    Adaptive Forced Balancing for Multivariable Systems

    Source: Journal of Dynamic Systems, Measurement, and Control:;1995:;volume( 117 ):;issue: 004::page 496
    Author:
    S. Beale
    ,
    B. Shafai
    ,
    P. LaRocca
    ,
    E. Cusson
    DOI: 10.1115/1.2801106
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: Active magnetic bearing (AMB) actuators support rotors without friction but require feedback control for stabilization and performance. Autobalancing compensation causes AMBs to spin a rotor about its inertial axis to eliminate synchronous force transmission from mass unbalance. Because mass unbalance constitutes a sinusoidal sensor disturbance within the bandwidth, conventional methods can either cause instability or fail to preserve desired bandwidth. We introduce a new method called adaptive forced balancing (AFB) which overcomes these problems. We consider AFB with a frequency tracking capability for SISO systems (i.e., single-end AMB suspensions) and show how to extend it for the MIMO case as applied to a double-end AMB suspension.
    keyword(s): Force , Friction , Sensors , Particle spin , Actuators , Rotors , Feedback AND Magnetic bearings ,
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      Adaptive Forced Balancing for Multivariable Systems

    URI
    http://yetl.yabesh.ir/yetl1/handle/yetl/115038
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    • Journal of Dynamic Systems, Measurement, and Control

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    contributor authorS. Beale
    contributor authorB. Shafai
    contributor authorP. LaRocca
    contributor authorE. Cusson
    date accessioned2017-05-08T23:46:44Z
    date available2017-05-08T23:46:44Z
    date copyrightDecember, 1995
    date issued1995
    identifier issn0022-0434
    identifier otherJDSMAA-26219#496_1.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/115038
    description abstractActive magnetic bearing (AMB) actuators support rotors without friction but require feedback control for stabilization and performance. Autobalancing compensation causes AMBs to spin a rotor about its inertial axis to eliminate synchronous force transmission from mass unbalance. Because mass unbalance constitutes a sinusoidal sensor disturbance within the bandwidth, conventional methods can either cause instability or fail to preserve desired bandwidth. We introduce a new method called adaptive forced balancing (AFB) which overcomes these problems. We consider AFB with a frequency tracking capability for SISO systems (i.e., single-end AMB suspensions) and show how to extend it for the MIMO case as applied to a double-end AMB suspension.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleAdaptive Forced Balancing for Multivariable Systems
    typeJournal Paper
    journal volume117
    journal issue4
    journal titleJournal of Dynamic Systems, Measurement, and Control
    identifier doi10.1115/1.2801106
    journal fristpage496
    journal lastpage502
    identifier eissn1528-9028
    keywordsForce
    keywordsFriction
    keywordsSensors
    keywordsParticle spin
    keywordsActuators
    keywordsRotors
    keywordsFeedback AND Magnetic bearings
    treeJournal of Dynamic Systems, Measurement, and Control:;1995:;volume( 117 ):;issue: 004
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
    نرم افزار کتابخانه دیجیتال "دی اسپیس" فارسی شده توسط یابش برای کتابخانه های ایرانی | تماس با یابش
    yabeshDSpacePersian