• DocumentCode
    1362980
  • Title

    PI Control, PI-Based State Space Control, and Model-Based Predictive Control for Drive Systems With Elastically Coupled Loads—A Comparative Study

  • Author

    Thomsen, Sönke ; Hoffmann, Nils ; Fuchs, Friedrich Wilhelm

  • Author_Institution
    Inst. for Power Electron. & Electr. Drives, Christian-Albrechts-Univ. of Kiel, Kiel, Germany
  • Volume
    58
  • Issue
    8
  • fYear
    2011
  • Firstpage
    3647
  • Lastpage
    3657
  • Abstract
    Three different control methods for the speed control of drive systems with elastically coupled loads are presented and compared. In drive applications where the load is connected to the driving motor with a drive shaft that has a finite stiffness, unwanted mechanical dynamics can occur. These unwanted dynamics can stress both the mechanical and electrical drive components. Furthermore, the shaft torsion, if neglected in the control synthesis, can dramatically reduce the achievable control performance. To overcome these challenges, the design, analysis, and comparative study of three speed control methods for a drive system with resonant loads are carried out. The considered control methods are the following: a conventional proportional-integral (PI) control, a PI-based state space control, and a model-based predictive control. To ensure a suitable basis for their comparison, the three different speed control methods are designed with equal bandwidths and are verified with the same test setup. Furthermore, all speed control methods presented use only the drive-side speed measurement to control the drive speed.
  • Keywords
    PI control; angular velocity control; machine control; motor drives; predictive control; shafts; state-space methods; PI control; drive shaft; drive systems; driving motor; elastically coupled loads; electrical drive components; mechanical drive components; predictive control; proportional-integral control; shaft torsion; speed control; speed measurement; state space control; Aerospace electronics; Damping; Load modeling; Observers; Polynomials; Shafts; Velocity control; AC machine; adjustable speed drive; asynchronous motor; control of drive; predictive control; state feedback; test bench; vibrations;
  • fLanguage
    English
  • Journal_Title
    Industrial Electronics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0278-0046
  • Type

    jour

  • DOI
    10.1109/TIE.2010.2089950
  • Filename
    5611605