• DocumentCode
    2135085
  • Title

    Design guidelines for disturbance observer´s filter in discrete time

  • Author

    Godler, Ivan ; Honda, Hideki ; Ohnishi, Kouhei

  • Author_Institution
    Fac. of Environ. Eng. Inf. & Media Sci., Univ. of Kitakyushu, Japan
  • fYear
    2002
  • fDate
    2002
  • Firstpage
    390
  • Lastpage
    395
  • Abstract
    Control by using a disturbance observer is one of the widely recognized servomotor robust control techniques. It is generally known that higher robustness is achieved by higher bandwidth of the low-pass filter, which is used in the disturbance observer. However, control engineers in practice face problems with realization of the high bandwidth filter. It was considered that the high frequency noise, which is amplified by the time derivative in the observer, causes instability. However, in our paper we show that the vibration and instability of the control system are rather caused by inappropriate sampling time than by the generated noise. We study both the low pass filter and the disturbance observer in discrete time, and give the guidelines to set the filter´s cut-off frequency, nominal parameters of the observer, and gain of the speed loop controller, all in relation to the sampling time, to achieve stable and nonvibrational response. Results are verified by simulation and experiments.
  • Keywords
    angular velocity control; low-pass filters; machine control; observers; robust control; servomotors; cut-off frequency; discrete time; disturbance observer´s filter; high frequency noise; inappropriate sampling time; instability; low pass filter; nonvibrational response; observer; servomotor robust control; speed loop controller gain; vibration; Bandwidth; Control systems; Frequency; Guidelines; Low pass filters; Noise robustness; Robust control; Sampling methods; Servomotors; Vibration control;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Advanced Motion Control, 2002. 7th International Workshop on
  • Print_ISBN
    0-7803-7479-7
  • Type

    conf

  • DOI
    10.1109/AMC.2002.1026952
  • Filename
    1026952