• DocumentCode
    424586
  • Title

    Suppression of flow oscillations in a vertical Bridgman crystal growth system

  • Author

    Sonda, Paul ; Yeckel, Andrew ; Derby, Jeffrey J. ; Daoutidis, Prodromos

  • Author_Institution
    Dept. of Chem. Eng. & Mater. Sci., Minnesota Univ., Minneapolis, MN, USA
  • Volume
    1
  • fYear
    2004
  • fDate
    June 30 2004-July 2 2004
  • Firstpage
    273
  • Abstract
    We consider the feedback control of flows in a vertical Bridgman crystal growth system. The vertical Bridgman process is used to grow single crystals for a wide array of applications, ranging from lasers to highspeed microelectronics to infrared sensors. We model the Bridgman system using conservation equations for energy and momentum and physically reasonable boundary and initial conditions. The Galerkin finite element method is used to spatially discretize this nonlinear, differential-algebraic equation set. We consider a prototypical Bridgman system experiencing a time-varying disturbance to its furnace temperature profile. A single-input single-output control system is considered for controller design. Proportional, proportional-integral, and input-output linearizing controllers are applied to the vertical Bridgman model to attenuate the flow oscillations. The volume-averaged flow kinetic energy is chosen as the single controlled output. The flows are controlled via rotation of the crucible containing the molten material. Simulation results show that nonlinear control is superior to P and PI control in the suppression of the flow oscillations.
  • Keywords
    Galerkin method; PI control; control system synthesis; crystal growth from melt; differential algebraic equations; feedback; finite element analysis; fluid oscillations; linear systems; nonlinear control systems; nonlinear equations; time-varying systems; Galerkin finite element method; flow feedback control; flow oscillation suppression; furnace temperature profile; input-output linearizing controller; nonlinear control; nonlinear differential-algebraic equation set; proportional linearizing controller; proportional-integral controller; single-input single-output control system; time-varying disturbance; vertical Bridgman crystal growth system; volume-averaged flow kinetic energy;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    American Control Conference, 2004. Proceedings of the 2004
  • Conference_Location
    Boston, MA, USA
  • ISSN
    0743-1619
  • Print_ISBN
    0-7803-8335-4
  • Type

    conf

  • Filename
    1383617