• DocumentCode
    801771
  • Title

    Active damping control of linear hybrid stepping motor for cogging force compensation

  • Author

    Hwang, Tai-Sik ; Seok, Jul-Ki ; Kim, Dong-Hun

  • Author_Institution
    Sch. of Electr. Eng., Yeungnam Univ., Kyungbuk, South Korea
  • Volume
    42
  • Issue
    2
  • fYear
    2006
  • Firstpage
    329
  • Lastpage
    334
  • Abstract
    Linear hybrid stepping motors (LHSMs) have a simple structure and provide ripple-free holding force at the aligned position. Despite these attractive features, however, an LHSM delivers strong thrust vibrations during position-to-position movement that are the dominant cause of the positioning error, mechanical stress, and acoustic noise. In order to overcome this defect, we have developed an active control scheme to damp the vibration of a π/4-multiple-pitched LHSM by a feed-forward compensation signal. Utilizing an elaborate reluctance network based on the finite-element analysis to take the nonlinear magnetic properties into account, we model the LHSM with force ripple components as a nonlinear position-dependent function. We estimate the damping force signal from the Jacobian linearization observer. The positioning accuracy is significantly improved through a closed-loop control scheme for restraining the thrust ripple.
  • Keywords
    closed loop systems; compensation; control system analysis; damping; feedforward; finite element analysis; linear motors; linearisation techniques; reluctance motors; stepping motors; vibration control; Jacobian linearization observer; acoustic noise; active damping control; closed-loop control; cogging force compensation; damping force signal; feedforward compensation; finite-element analysis; force ripple components; linear hybrid stepping motor; mechanical stress; nonlinear magnetic properties; position-to-position movement; positioning errors; reluctance network; ripple-free holding force; thrust ripples; thrust vibrations; Acoustic noise; Damping; Feedforward systems; Finite element methods; Force control; Forging; Magnetic analysis; Reluctance motors; Stress; Vibration control; Active control scheme; closed-loop control; feed-forward compensation; linear hybrid stepping motors (LHSMs); thrust vibrations;
  • fLanguage
    English
  • Journal_Title
    Magnetics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9464
  • Type

    jour

  • DOI
    10.1109/TMAG.2005.860961
  • Filename
    1580701