• DocumentCode
    1947259
  • Title

    Absolute stabilization of multi-mass resonant system by phase-lead compensator based on disturbance observer

  • Author

    Katsura, Seiichiro ; Ohnishi, Kouhei

  • Author_Institution
    Dept. of Electr. Eng., Nagaoka Univ. of Technol., Niigata
  • fYear
    0
  • fDate
    0-0 0
  • Firstpage
    194
  • Lastpage
    199
  • Abstract
    Vibration suppression and attainment of robustness in motion control systems is an important problem in industry applications. To address this issue, several control methods to suppress the vibration have been developed. However, in the conventional vibration control systems, much research has not considered the higher order of resonant frequencies. This paper proposes a novel vibration control of multi-mass resonant system based on the phase-lead compensator. The paper clarifies the influence of the parameter variation of a disturbance observer on acceleration control system. The effect of phase-lead compensation on the acceleration reference is attained by setting the nominal inertia value larger than the real inertia. The phase-lead compensator can stabilize all resonant poles of multi-mass resonant system. Since the proposed phase-lead compensation system is based on the disturbance observer technique, it can realize both suppression of vibration and robustness in motion systems. The experimental results show viability of the proposed method
  • Keywords
    acceleration control; compensation; motion control; observers; robust control; vibration control; acceleration control system; disturbance observer; higher order resonant frequencies; motion control systems; multi-mass resonant system stabilization; parameter variation; phase-lead compensator; robustness; vibration suppression; Acceleration; Control systems; Electrical equipment industry; Frequency estimation; Motion control; Resonance; Resonant frequency; Robust control; Robustness; Vibration control;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Advanced Motion Control, 2006. 9th IEEE International Workshop on
  • Conference_Location
    Istanbul
  • Print_ISBN
    0-7803-9511-1
  • Type

    conf

  • DOI
    10.1109/AMC.2006.1631657
  • Filename
    1631657