最適レギュレータによる位置決め整定と残留振動抑制の一手法  [in Japanese] A Method of Positioning Settling and Residual Vibration Reduction by Means of Optimal Regulator  [in Japanese]

    • 原 進 HARA Susumu
    • 名古屋大学大学院工学研究科 Department of Mechanical Science and Engineering, Graduate School of Engineering, Nagoya University

Abstract

Positioning control of vibration systems such as flexible structures is one of the most fundamental technologies for mechanical structures. Different from feedforward control based methods, the use of LQ optimal regulator realizes the feedback control of vibrating parts of a controlled object. However, if the standard LQ optimal regulator is applied to long distance positioning problems, it requires much control energy in motion starting and the positioning error becomes large in settling. Therefore, its use is suitable for positioning settling and residual vibration reduction control in short distance problems. Taking such a background into account, this study proposes a control method switching from a simple feedforward access control technique to the LQ optimal regulator. Especially, this paper mentions a proper switching method of the two control modes. The proposed method does not require much computational load in comparison with the author's conventional methods and is practical for many industry applications. The effectiveness of the proposed method is verified by numerical calculations and experiments.

Journal

Transactions of the Japan Society of Mechanical Engineers. C   [List of Volumes]

Transactions of the Japan Society of Mechanical Engineers. C 75(760), 3136-3143, 2009-12-25  [Table of Contents]

The Japan Society of Mechanical Engineers

References:  16

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Cited by:  1

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Codes

  • NII Article ID (NAID) :
    110007503909
  • NII NACSIS-CAT ID (NCID) :
    AN00187463
  • Text Lang :
    JPN
  • Article Type :
    Journal Article
  • ISSN :
    03875024
  • NDL Article ID :
    10541028
  • NDL Source Classification :
    ZN11(科学技術--機械工学・工業)
  • NDL Call No. :
    Z16-1056
  • Databases :
    CJP  CJPref  NDL  NII-ELS